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2023
197. Nanoscale and ultrafast in situ techniques to probe plasmon photocatalysis
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C. C. Carlin, A. X. Dai, A. Al-Zubeidi, E. M. Simmerman, H. Oh, N. Gross, S. A. Lee, S. Link, C. F. Landes, F. H. da Jornada, J. A. Dionne
Chem. Phys. Rev. 4, 041309 (2023)
196. Properties of Carbon Dots versus Small Molecules from “Bottom-up” Synthesis
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Z. Bian, A. Wallum, A. Mehmood, E. Gomez, Z. Wang, S. Pandit, S. Nie, S. Link, B. G. Levine, and M. Gruebele
ACS Nano, 17, 22, 22788–22799 (2023)
195. Early-Career and Emerging Researchers in Physical Chemistry Volume 2
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A. N. Alexandrova, J. S. Biteen, S. Coriani, F. M. Geiger, A. A. Gewirth, G. R. Goward, H. Guo, L. Huang, J.-F. Li, T. Liedl, S. Link, Z.-P. Liu, S. Maiti, A. J. Orr-Ewing, D. L. Osborn, J. Pfaendtner, B. Roux, F. Schmid, JR. Schmidt, W. F. Schneider, L. V. Slipchenko, G. C. Solomon, J. A. van Bokhoven, V. V. Speybroeck, S. Ye, T. D. Crawford, M. T. Zanni, G. V. Hartland, J.-E. Shea
J. Phys. Chem. B 127, 43, 9211–9214 (2023)
194. Electron–Phonon Relaxation Dynamics of Hot Electrons in Gold Nanoparticles Are Independent of Excitation Pathway
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W.-Y. Chiang, A. Bruncz, B. Ostovar, E. K. Searles, S. Brasel, G. V. Hartland, and S. Link
J. Phys. Chem. C, 127, 43, 21176–21185 (2023)
193. High-Throughput Screening of Optical Properties of Glass-Supported Plasmonic Nanoparticles Fabricated by Polymer Pen Lithography
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N. Gross, W. Wang, S. Brasel, E. K. Searles, B. Bourgeois, J. A. Dionne, C. F. Landes, and S. Link
J. Phys. Chem. C, 127, 39, 19607–19619(2023)
192. Active Control of Energy Transfer in Plasmonic Nanorod–Polyaniline Hybrids
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A. Jones, E. K. Searles, M. Mayer, M. Hoffmann, N. Gross, H. Oh, A. Fery, S. Link, C. F. Landes
J. Phys. Chem. Lett., 14, 36, 8235–8243 (2023)
191. Plasmon Energy Transfer Driven by Electrochemical Tuning of Methylene Blue on Single Gold Nanorods
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H. Oh, E. K. Searles, S. Chatterjee, Z. Jia, S. A. Lee, S. Link, C. F. Landes
ACS Nano, 17, 18, 18280–18289 (2023)
190. Progress and Prospects in Optical Ultrafast Microscopy in the Visible Spectral Region: Transient Absorption and Two-Dimensional Microscopy
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N. Gross, C. T. Kuhs, B. Ostovar, W.-Y. Chiang, K. S. Wilson, T. S. Volek, Z. M. Faitz, C. C. Carlin, J. A. Dionne, M. T. Zanni, M. Gruebele, S. T. Roberts, S. Link, C. F. Landes
J. Phys. Chem. C, 127, 14557–14586 (2023)
189. Site-Specific Chemistry on Gold Nanorods: Curvature-Guided Surface Dewetting and Supracolloidal Polymerization
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H. Duan, Z. Jia, M. Liaqat, M. D. Mellor, H. Tan, M.-P. Nieh, Y. Lin, S. Link, C. F. Landes, J. He
ACS Nano, 17, 12788–12797 (2023)
188. d-Band Holes React at the Tips of Gold Nanorods
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A. Al-Zubeidi, Y. Wang, J. Lin, C. Flatebo, C. F. Landes, H. Ren, and and S. Link
J. Phys. Chem. Lett. 14, 23, 5297–5304 (2023)
187. d-Band Hole Dynamics in Gold Nanoparticles Measured with Time-Resolved Emission Upconversion Microscopy
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S. A. Lee, C. T. Kuhs, E. K. Searles, H. O. Everitt, C. F. Landes, and S. Link
Nano Lett. 23, 8, 3501–3506 (2023)
186. Ultrafast relaxation of lattice distortion in two-dimensional perovskites
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H. Zhang, W. Li, J. Essman, C. Quarti, I. Metcalf, W.-Y. Chiang, S. Sidhik, J. Hou, A. Fehr, A. Attar, M.-F. Lin, A. Britz, X. Shen, S. Link, X. Wang, U. Bergmann, M. G. Kanatzidis, C. Katan, J. Even, J.-C. Blancon, and A. D. Mohite
Nature Physics volume 19, pages545–550(2023)
185. Chiral Plasmonic Pinwheels Exhibit Orientation-Independent Linear Differential Scattering under Asymmetric Illumination
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L. A. McCarthy, O. Verma, G. N. Naidu, L. Bursi, A. Alabastri, P. Nordlander, and S. Link
Chem. Biomed. Imaging, 1, 1, 30-39 (2023)
184. Strong Substrate Binding Modulates the Acoustic Quality Factors in Gold Nanodisks
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N. Gross, M. Madadi, B. Ostovar, P. D. Dongare, L. A. McCarthy, W.-Y. Chiang, W.-S. Chang, N. J. Halas, C. F. Landes, J. E. Sader, and S. Link
J. Phys. Chem. C, 127, 10, 5054-5066(2023)
183. Mechanism for plasmon-generated solvated electrons
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A. Al-Zubeidi, B. Ostovar, C. C. Carlin, B. C. Li, S. A. Lee, W,-Y, Chiang, N. Gross, S. Dutta, A. Misiura, E. K. Searles, A. Chakraborty, S. T. Roberts, J. A. Dionne, P. J. Rossky, C. F. Landes, and S. Link
PNAS, 120, 3 (2023)
182. Single-Particle Photoluminescence and Dark-Field Scattering during Charge Density Tuning
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E. K. Searles, E. Gomez, S. A. Lee, B. Ostovar, S. Link, and C. F. Landes
J. Phys. Chem. Lett. 14, 2, 318–325 (2023)
181. Nonlinear Effects in Single-Particle Photothermal Imaging
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C. West, S. A. Lee, J. Shooter, E. K. Searles, H. Goldwyn, K. Willets, S. Link, and D. J. Masiello
J. Chem. Phys. 158, 024202 (2023)
2022
180. Single-Particle Insights into Plasmonic Hot Carrier Separation Augmenting Photoelectrochemical Ethanol Oxidation with Photocatalytically-Synthesized Pd-Au Bimetallic Nanorods
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G. T. Forcherio, B. Ostovar, J. Boltersdorf, Y,-Y, Cai, A. C. Leff, K. N. Grew, C. A. Lundgren, S. Link, and D. R. Baker
ACS Nano, 16, 8, 12377-12389 (2022)
179. Towards scalable plasmonic Fano-resonant metasurfaces for colorimetric sensing
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B. Cerjan, B. Gerislioglu, S. Link, P. Nordlander, N. J. Halas, and M. H. Griep
Nanotechnology, 33, 405201 (2022)
178. Spectroscopic signatures of plasmon-induced charge transfer in gold nanorods
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S. A. Lee, B. Ostovar, C. F. Landes, and S. Link
J. Chem. Phys. 156 (5), 064702 (2022)
177. Naturally Occurring Proteins Direct Chiral Nanorod Aggregation
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L. A. Warning, A. Rafiei Miandashti, A. Misiura, C. F. Landes, and S. Link
J. Phys. Chem. C, 126 (5), 2656–2668 (2022)
2021
176. Toward Quantitative Nanothermometry Using Single-Molecule Counting
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P. A. Reinhardt, A. P. Crawford, C. A. West, G. DeLong, S. Link, D. J. Masiello, and K. A. Willets
J. Phys. Chem. B 125 (44), 12197 (2021)
175. Nanophotonic Approaches for Chirality Sensing
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L. A. Warning, A. Rafiei Miandashti, L. A. McCarthy, Q. Zhang, C. F. Landes, and S. Link
ACS Nano, 15 (10), 15538 (2021)
174. Machine-Learned Decision Trees for Predicting Gold Nanorod Sizes from Spectra
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K. Shiratori, L. D. C. Bishop, B. Ostovar, R. Baiyasi, Y.-Y. Cai, P. J. Rossky, C. F. Landes, and S. Link
J. Phys. Chem. C, 125 (35), 19353 (2021)
173. Light emission from plasmonic nanostructures
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Y.-Y. Cai, L. J. Tauzin, B. Ostovar, S. Lee, and S. Link
J. Chem. Phys., 155, 060901 (2021)
172. Heterogeneity and Hysteresis in the Polymer Collapse of Single Core–Shell Stimuli-Responsive Plasmonic Nanohybrids
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C. Flatebo, C. Dutta, B. Ostovar, S. Link, and C. F. Landes
J. Phys. Chem. C, 125 (33), 18270 (2021)
171. Wavelength-Dependent Photothermal Imaging Probes Nanoscale Temperature Differences among Subdiffraction Coupled Plasmonic Nanorods
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S. A. Hosseini Jebeli, C. A. West, S. A. Lee, H. J. Goldwyn, C. R. Bilchak, Z. Fakhraai, K. A. Willets, S. Link, and D. J. Masiello
Nano Lett., 21 (12), 5386 (2021)
170. Virtual Issue on Chiral Plasmonics
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S. Link and G. V. Hartland
J. Phys. Chem. C, 125 (19), 10175 (2021)
169. Single-Particle Hyperspectral Imaging Reveals Kinetics of Silver Ion Leaching from Alloy Nanoparticles
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A. Al-Zubeidi, F. Stein, C. Flatebo, C. Rehbock, S. A. Hosseini Jebeli, C. F. Landes, S. Barcikowski, and S. Link
ACS Nano, 15 (5), 8363 (2021)
168. Chemical Interface Damping of Surface Plasmon Resonances
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S. A. Lee and S. Link
Acc. Chem. Res., 54 (8), 1950 (2021)
167. Coupled-Dipole Modeling and Experimental Characterization of Geometry-Dependent Trochoidal Dichroism in Nanorod Trimers
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R. Baiyasi, H. J. Goldwyn, L. A. McCarthy, C. A. West, S. A. Hosseini Jebeli, D. J. Masiello, S. Link, and C. F. Landes
ACS Photonics, 8 (40), 1159 (2021)
166. Single-particle scattering spectroscopy: fundamentals and applications
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A. Al-Zubeidi, L. A. McCarthy, A. Rafiei-Miandashti, T. S. Heiderscheit, and S. Link
Nanophotonics, 10 (6), 1621 (2021)
165. Tuning Electrogenerated Chemiluminescence Intensity Enhancement Using Hexagonal Lattice Arrays of Gold Nanodisks
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T. S. Heiderscheit, S. Oikawa, S. Sanders, H. Minamimoto, E. K. Searles, C. F. Landes, K. Murakoshi, A. Manjavacas, and S. Link
J. Phys. Chem. Lett., 12 (10), 2516 (2021)
164. Extrinsic Trochoidal Dichroism is Modulated by Nanoparticle Symmetry
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L. A. McCarthy, S. A. Hosseini Jebeli, and S.Link
J. Phys. Chem. C, 125 (7), 4092 (2021)
163. Acoustic Vibrations and Energy Dissipation Mechanisms for Lithographically Fabricated Plasmonic Nanostructures Revealed by Single-Particle Transient Extinction Spectroscopy
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M.-N. Su, B. Ostovar, N. Gross, J. E. Sader, W.-S. Chang, and S.Link
J. Phys. Chem. C, 125 (3), 1621 (2021)
162. Plasmon Energy Transfer in Hybrid Nanoantennas
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S. S. E. Collins, E. K. Searles, L. J. Tauzin, M. Lou, L. Bursi, Y. Liu, J. Song, C. Flatebo, R. Baiyasi, Y.-Y. Cai, B. Foerster, T. Lian, P. Nordlander, S. Link, and C. F. Landes
ACS Nano, 15 (6), 9522 (2021)
2020
161. Increased Intraband Transitions in Smaller Gold Nanorods Enhance Light Emission
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B. Ostovar, Y.-Y. Cai, L. J. Tauzin, S. A. Lee, A. Ahmadivand, R. Zhang, P. Nordlander, and S. Link
ACS Nano, 14 (11), 15757 (2020)
160. Polarized evanescent waves reveal trochoidal dichroism
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L. A. McCarthy, K. W. Smith, X. Lan, S. A. Hosseini Jebeli, L. Bursi, A. Alabastri, W.-S. Chang, P. Nordlander, and S. Link
PNAS, 117 (28) 16143 (2020)
159. Quantitative Analysis of Nanorod Aggregation and Morphology from Scanning Electron Micrographs Using SEMseg
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R. Baiyasi, M. J. Gallagher, L. A. McCarthy, E. K. Searles, Q. Zhang, S. Link, and C. F. Landes
J. Phys. Chem. A, 124 (25), 5262 (2020)
158. Acoustic Vibrations of Al Nanocrystals: Size, Shape and Crystallinity Revealed by Single-Particle Transient Extinction Spectroscopy
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B. Ostovar, M.-N. Su, D. Renard, B. D. Clark, P. D. Dongare, C. Dutta, N. Gross, J. E. Sader, C. F. Landes, W.-S. Chang, N. J. Halas, and S. Link
J. Phys. Chem. A, 124 (25), 5262 (2020)
157. Interfacial states cause equal decay of plasmons and hot electrons at gold – metal oxide interfaces
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B. Foerster, M. Hartelt, S. S. E. Collins, M.Aeschlimann, S. Link, and C. Sönnichsen
Nano Lett., 20 (5), 3338 (2020)
156. Nanoscale Surface-Induced Unfolding of Single Fibronectin Is Restricted by Serum Albumin Crowding
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L. A. Warning, Q. Zhang, R. Baiyasi, C. F. Landes, and S. Link
Phys. Chem. Lett. 11, 1170 (2020)
2019
155. DNA Enabled Chiral Gold Nanoparticle – Chromophore Hybrid Structure with Resonant Plasmon – Exciton Coupling Gives Unusual and Strong Circular Dichroism
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X. Lan, X. Zhou, L. A. McCarthy, A. O. Govorov, Y. Liu, and S. Link
J. Am. Chem. Soc. 141(49), 19336 (2019)
154. Nanoelectrode-emitter spectral overlap amplifies surface enhanced electrogenerated chemiluminescence
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T. S. Heiderscheit, M. J. Gallagher, R. Baiyasi, S. S. E. Collins, S. A. Hosseini Jebeli, L. Scarabelli, A. Al-Zubeidi, C. Flatebo, W.-Sh. Chang, C. F. Landes, and S. Link
J. Am. Chem. Soc. 141(49), 19336 (2019)
153. Unraveling the origin of chirality from plasmonic nanoparticle-protein complexes
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Q. Zhang, T. Hernandez, K. W. Smith, S. A. Hosseini Jebeli, A. X. Dai, L. Warning, R. Baiyasi, L. A. McCarthy, H. Guo, D.-H. Chen, J. A. Dionne, C. F. Landes, and S. Link
Science, 365 (6460), 1475 (2019)
152. Single particle emission spectroscopy resolves d-hole relaxation in copper nanocubes
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Y.-Y. Cai, S. S. E. Collins, M. J. Gallagher, U. Bhattacharjee, R. Zhang, T. H. Chow, A. Ahmadivand, B. Ostovar, A. Al-Zubeidi, J. Wang, P. Nordlander, C. F. Landes, and S. Link
ACS Energy Letters, 4, 2458 (2019)
151. Controlled Overgrowth of Five-Fold Concave Nanoparticles into Plasmonic Nanostars and Their Single-Particle Scattering Properties
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J. J. Velázquez-Salazar, L. Bazán-Díaz, Q. Zhang, R. Mendoza-Cruz, L. Montaño-Priede, G. Guisbiers, N. Large, S. Link, and M. José-Yacamán
ACS Nano Article, 13(9), 10113(2019)
150. Active Far-Field Control of the Thermal Near-Field via Plasmon Hybridization
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U. Bhattacharjee, C. A. West, S. A. Hosseini Jebeli, H. J. Goldwyn, X.-T. Kong, Zhongwei Hu, E. K. Beutler, W.-S. Chang, K. A. Willets, S. Link, D. J. Masiello
ACS Nano, 13(8), 9655 (2019)
149. The JPC Periodic Table
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G. C. Schatz, A. B. McCoy, J.-E. Shea, C. J. Murphy, G. Scholes, V. Batista, K. Bhattacharyya, J. Bisquert, D. Crawford, T. Cuk, R. Dickson, H. Fairbrother, M. Forsyth, J. Fourkas, F. Geiger, A. Gewirth, T. Goodson, III, G. R. Goward, H. Guo, G. V. Hartland, P. Jungwirth, S. Link, G.-Y. Liu, Z.-P. Liu, B. Mennucci, T. Minton, A.S. Mullin, O. Prezhdo, W. F. Schneider, B. Schwartz, N. Snider, G. Solomon, E. Weitz, X. Yang, A. Yethiraj, F. Zaera, M. Zanni, J. Zhang, H. Zhong, and T. Zwier
J. Phys. Chem. Lett., 10(14), 4051 (2019)
148. Gold Nanotetrapods with Unique Topological Structure and Ultranarrow Plasmonic Band as Multifunctional Therapeutic Agents
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Y.-X., Chang, N.-N., Zhang, Y.-Ch. Xing, Q. Zhang,A. Oh, H.-M. Gao, Y. Zhu, H. Baik, B. Kim, Y. Yang, W.-S. Chang, T. Sun, J. Zhang, Z.-Y. Lu, K. Lee, S. Link, K. Liu
J. Phys. Chem. Lett., 10, 4505 (2019)
147. Electrodissolution Inhibition of Gold Nanorods with Oxoanions
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C. Flatebo, S. S. E. Collins, B. S. Hoener, Y.-Y. Cai, S. Link, and C. F. Landes
J. Phys. Chem. Lett., 10, 4505 (2019)
146. Ultrafast Electron Dynamics in Single Aluminum Nanostructures
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M.-N. Su, C. J. Ciccarino, S. Kumar, P. D. Dongare, S. A. Hosseini Jebeli, D. Renard, Y. Zhang, B. Ostovar, W.-S. Chang, P. Nordlander, N. J. Halas, R. Sundararaman, P. Narang, and S. Link
Nano Lett. Article, 19(5), 3091 (2019)
145. Plasmon damping depends on the chemical nature of the nanoparticle interface
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B. Foerster, V. A. Spata, E. A. Carter, C. Sönnichsen, and S. Link
Science Advances, 5 (3), (2019)
144. PSF Distortion in Dye–Plasmonic Nanomaterial Interactions: Friend or Foe?
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R. Baiyasi, S. A. Hosseini Jebeli, Q. Zhang, L. Su, J. Hofkens, H. Uji-i, S. Link, and C. F. Landes
Science Advances, 5 (3), (2019)
143. Anti-Stokes Emission from Hot Carriers in Gold Nanorods
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Y.-Y. Cai, E. Sung, R. Zhang, L. J. Tauzin, J. G. Liu, B. Ostovar, Y. Zhang, W.-S. Chang, P. Nordlander, and S. Link
Science Advances, 5 (3), (2019)
142. Hot Holes Assist Plasmonic Nanoelectrode Dissolution
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A. Al-Zubeidi, B. S. Hoener, S. S. E. Collins, W. Wang, S. R. Kirchner, S. A. Hosseini Jebeli, A. Joplin, W.-S. Chang, S. Link, and . F. Landes
Nano Lett., 19 (2), 1301 (2019)
2018
141. Exploiting Evanescent Field Polarization for Giant Chiroptical Modulation from Achiral Gold Half-Rings
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K. W. Smith, L. A. McCarthy, A. Alabastri, L. Bursi, W.-S. Chang, P. Nordlander, and S. Link
ACS Nano, 12 (11), 11657 (2018)
140. Exploring the Relationship between Plasmon Damping and Luminescence in Lithographically Prepared Gold Nanorods
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L. J. Tauzin, Y. Cai, K. W. Smith, S. A. Hosseini Jebeli, U. Bhattacharjee, W.-S. Chang, and S. Link
ACS Photonics, 5 (9), 3541 (2018)
139. Particle Plasmons as Dipole Antennas: State Representation of Relative Observables
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B. Foerster, J. Rutten, H. Pham, S. Link, and C. Sönnichsen
J. Phys. Chem. C, 122 (33),19116 (2018)
138. Optical Characterization of Gold Nanoblock Dimers: From Capacitive Coupling to Charge Transfer Plasmons and Rod Modes
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M.-N. Su, Q. Sun, K. Ueno, W.-S. Chang, H. Misawa, and S. Link
J. Phys. Chem. C, 122 (31), 18005 (2018)
137. Au@CdSe heteroepitaxial nanorods: An example of metal nanorods fully covered by a semiconductor shell with strong photo-induced interfacial charge transfer effects
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S.-C. Lim, W.-F. Lo, P.-Y. Yang, S.-C. Lu, A. Joplin, S. Link, W.-S. Chang, and H.-Y. Tuan
J. Colloid Interface Sci., 532, 143 (2018)
136. Plasmonic Sensing and Control of Single-Nanoparticle Electrochemistry
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B. S. Hoener, S. R. Kirchner, T. S. Heiderscheit, S. S.E. Collins, W.-S. Chang, S. Link, and C. F. Landes
Chem., 4 (7), 1560 (2018).
135. Scattering Properties of Individual Hedgehog Particles
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S. R. Kirchner, M.-N. Su, J. H. Bahng, D. G. Montjoy, W.-S. Chang, N. Kotov, and S. Link
J. Phys. Chem. C, 122 (22), 12015 (2018)
134. Polycrystallinity of Lithographically Fabricated Plasmonic Nanostructures Dominates Their Acoustic Vibrational Damping
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C. Yi, M.-N. Su, P. D. Dongare, D. Chakraborty, Y.-Y. Cai, D. M. Marolf, R. N. Kress, B. Ostovar, L. J. Tauzin, F. Wen, W.-S. Chang, M. R. Jones, J. E. Sader, N. J. Halas, and S. Link
Nano Lett., 18 (6), 3494 (2018)
133. Plasmonics in Chemistry
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S. Link and D. Masiello
Chem. Rev.,118, 1863 (2018)
132. Snapshot Hyperspectral Imaging (SHI) for Revealing Irreversible and Heterogeneous Plasmonic Processes
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S. R. Kirchner, K. Smith, B. S. Hoener, Sean S. E. Collins, W. Wang, Y.-Y. Cai, C. Kinnear, H. Zhang, W.-S. Chang, P. Mulvaney, C. F. Landes, and S. Link
J. Phys. Chem. C 122, 6865 (2018)
131. Photoluminescence of Gold Nanorods: Purcell Effect Enhanced Emission from Hot Carriers
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Y.-Y. Cai, J. G. Liu, L. J. Tauzin, D. Huang, E. Sung, H. Zhang, A. Joplin, W.-S. Chang, P. Nordlander, and S. Link
ACS Nano Article, 12 (2), 976 (2018)
130. Imaging and Spectroscopy of Single Metal Nanostructure Absorption
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A. Joplin, W.-S. Chang, and S. Link
Langmuir, 34 (13), 3775 (2018)
129. Relaxation of Plasmon-Induced Hot Carriers
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J. G. Liu, H. Zhang, S. Link, and P. Nordlander
ACS Photonics, 5 (7), 2584 (2018)
128. Environmental Symmetry Breaking Promotes Plasmon Mode Splitting in Gold Nanotriangles
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K. W. Smith, J. Yan, T. Hernandez, D. F. Swearer, L. Scarabelli, H. Zhang, H. Zhao, N. A. Moringo, W.-S. Chang, L. M. Liz-Marzan, E. Ringe, P. Nordlander, and S. Link
J. Phys. Chem. C, 122 (25), 13259 (2018)
127. Using Particle Lithography to Tailor the Architecture of Au Nanoparticle Plasmonic Nanoring Arrays
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A. Pravitasari, M. Negrito, K. Light, W.-S. Chang, S. Link, M. Sheldon, and J. D. Batteas
J. Phys. Chem. B, 122 (2), 730 (2018)
2017
126. Correlated Absorption and Scattering Spectroscopy of Individual Platinum-Decorated Gold Nanorods Reveals Strong Excitation Enhancement in the Nonplasmonic Metal
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A. Joplin, S. A. Hosseini Jebeli, E. Sung, N. Diemler, P. J. Straney, M. Yorulmaz, W.-S. Chang, J. E. Millstone, and S. Link
ACS Nano, 11(12), 12346 (2017)
125. Patterning Supported Gold Monolayers through Chemical Lift-Off Lithography
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L. S. Slaughter, K. M. Cheung, S. Kaappa, H. H. Cao, Q. Yang, T. D. Young, A. C. Serino, S. Malola, J. M. Olson, S. Link, H. Häkkinen, A. M. Andrews, and P. S. Weiss
Beilstein J. Nanotechnol., 8, 2648 (2017)
124. Vibrational Coupling in Plasmonic Molecules
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C. Yi, P. D. Dongare, M.-N. Su, W. Wang, D. Chakraborty, F. Wen, W.-S. Chang, J. E. Sader, P. Nordlander, N. J. Halas, and S. Link
PNAS, 114(44), 11621 (2017)
123. Optimization of Spectral and Spatial Conditions to Improve Super-Resolution Imaging of Plasmonic Nanoparticles
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S. Indrasekara, B. Shuang, F. Hollenhorst, B. Hoener, A. Hoggard, S. Chen, E. Villarreal, Y.-Y Cai, L. Kisley, P. Derry, W.-S Chang, E. Zubarev, E. Ringe, S. Link, and C. Landes
J. Phys. Chem. Lett., 8(1), 299 (2017)
122. Chemical Interface Damping Depends on Electrons Reaching the Surface
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B. Foerster, A. Joplin, K. Kaefer, S. Celiksoy, S. Link, and C. Sönnichsen
ACS Nano, 11 (3) , 2886 (2017)
121. Opto-mechanics of Single Aluminum Nanodisks
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M.-N. Su, P. D. Dongare, D. Chakraborty, Y. Zhang, C. Yi, F. Wen, W.-S. Chang, P. Nordlander, J. E. Sader, N. J. Halas, and S. Link
Nano Lett. 17 (4), 2575 (2017)
120. Biological applications of electromagnetically active nanoparticles
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L. Cognet, M. Treguer-Delapierre, and S. Link
J. Phys. D: Appl. Phys. 50 (20) (2017) Editorial.
119. Optical Characterization of Chiral Plasmonic Nanostructures
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K. Smith, S. Link, and W.-S. Chang
J. Photochemistry and Photobiology C: Photochemistry Review 32, 40 (2017)
118. Spectral Response of Plasmonic Gold Nanoparticles to Capacitive Charging: Morphology Effects
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B. S. Hoener, H. Zhang, T. S. Heiderscheit, S. R. Kirchner, A. S. De Silva Indrasekara, R. Baiyasi, Y. Cai, P. Nordlander, S. Link, C. F. Landes, and W.-S. Chang
J. Phys. Chem. Lett. 8 (12), 2681 (2017)
2016
117. High Chromaticity Aluminum Plasmonic Pixels for Active Liquid Crystal Displays
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J. Olson, A. Manjavacas, T. Basu, D. Huang, A. E. Schlather, B. Zheng, N. J. Halas, P. Nordlander, and S. Link
ACS Nano 10(1), 1108 (2016)
116. Laser-induced spectral hole-burning through a broadband distribution of Au Nanorods
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C. J. DeSantis, D. Huang, H. Zhang, N. J. Hogan, H. Zhao, Y. Zhang, A. Manjavacas, Y. Zhang, W.-S. Chang, P. Nordlander, S. Link, and N. J. Halas
J. Phys.Chem. C 120(37), 20518 (2016)
115. Adsorption and Unfolding of a Single Protein Triggers Nanoparticle Aggregation
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S. Dominguez-Medina, L. Kisley, L. J. Tauzin, A. Hoggard, B. Shuang, A. S. D. S. Indrasekara, S. Chen, L. -Y. Wang, P. J. Derry, A. Liopo, E. R. Zubarev, C. F. Landes, and S. Link
ACS Nano 10, 2103 (2016)
114. Single-Particle Plasmon Voltammetry (spPV) for Detecting Anion Adsorption
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C. P. Byers, B. S. Hoener, W.-S. Chang, S. Link, and C. F. Landes
Nano Lett., 16, 4, (2016)
113. Measuring the Hydrodynamic Size of Nanoparticles using Fluctuation Correlation Spectroscopy
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S. Dominguez-Medina, S. Chen, L. J. Blankenburg, P. Swanglap, C. F. Landes, and S. Link
Annual Review of Physical Chemistry, 67, 489 (2016)
112.Spectroelectrochemistry of Halide Anion Adsorption and Dissolution of Single Gold Nanorods
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B. S. Hoener, C. P. Byers, T. S. Heiderscheit, S. Indrasekara, A. Hoggard, W.-S. Chang, S.Link, and C. F. Landes
J. Phys. Chem. C, 120 (37), 20604 (2016)
111.Chiral and Achiral Nanodumbbell Dimers: The Effect of Geometry on Plasmonic Properties
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K. W. Smith, H Zhao, H. Zhang, A. Sánchez-Iglesias, M. Grzelczak, Y. Wang, W.-S. Chang, P. Nordlander, L. Liz-Marzán, and S. Link
ACS Nano, 10 (6), 6180 (2016)
110.Absorption Spectroscopy of an Individual Fano Cluster
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M. Yorulmaz, A. R. Hoggard, H. Zhang, F. Wen, W.-S. Chang, N. J. Halas, P. Nordlander, and S. Link
Nano Lett., 16 (10), 6497 (2016)
109. Plasmonic colour generation
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A. Kristensen, J. Yang,S. Bozhevolnyi, S. Link, P. Nordlander, N. J. Halas, and N. Asger Mortensen
Nature Reviews Materials, 2, 16088 (2016)
2015
108. Optical characterization of single plasmonic nanoparticles
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J. Olson, S. Dominguez-Medina, A. Hoggard, L.-Y. Wang, W. -S. Chang, and S. Link
Chem. Soc. Rev 44, 40 (2015)
107. Chiral templating of self-assembling nanostructures by circularly polarized light
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J. Yeom, B. Yeom, Henry Chan, K. W. Smith, S. Dominguez-Medina, J. H. Bahng, G. Zhao, W.-S. Chang, S.-J. Chang, A. Chuvilin, D. Melnikau, A. L. Rogach, P. Zhang, S. Link, P. Král, and N. A. Kotov
Nat. Materials 14, 66 (2015)
106. Single-Particle Absorption Spectroscopy by Photothermal Contrast
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M. Yorulmaz, S. Nizzero, A. Hoggard, L.-Y. Wang, Y.-Y. Cai, M.-N. Su, W.-S. Chang, and S. Link
Nano Lett 15, 3041(2015)
105. Tuning the acoustic frequency of a gold nanodisk through its adhesion layer
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W.-S. Chang, F. Wen, D. Chakraborty, M.-N. Su, Y. Zhang, B. Shuang, P. Nordlander, J. E. Sader, N. J. Halas, and S. Link
Nat. Comm. 6, 7022 (2015)
104. Modal interference in spiky nanoshells
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S. P. Hastings, Z. Qian, P. Swanglap, Y. Fang, N. Engheta, S.-J. Park, S. Link, and Z. Fakhraai
Opt. Express 23, 9, 11290 (2015)
103. Synthesis of a fluorescent BODIPY-tagged ROMP catalyst and initial polymerization-propelled diffusion studies
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J. Godoy, V. G.-López, L.-Y. Wang, S. R.-Gagné, S. Link, A. A. Martía, and J. M. Tour
Tetrahedron 71, 5965 (2015)
102. Photoluminescence of a Plasmonic Molecule
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D. Huang, C. P. Byers, L.-Y. Wang, A. Hoggard, B. Hoener, S. Dominguez-Medina, S. Chen, W.-S. Chang, C.F.Landes, and S. Link
ACS Nano 9, 7072 (2015)
101. Circular Differential Scattering of Single Chiral Self-Assembled Gold Nanorod Dimers
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L.-Y Wang, K. W. Smith, S. Dominguez-Medina, N. Moody, J. M. Olson, H. Zhang, W.-S. Chang, N. Kotov, and S. Link
ACS Photonics 2(11), 1602 (2015)
100. A Single quantum dot controls a plasmonic cavity’s scattering and anisotropy
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T. Hartsfield, W.-S. Chang, S.-C. Yang, T. Ma, J. Shi, L. Sun, G. Shvets, S. Link, and X. Li
Proc. Natl. Acad. Sci. USA 112.40 (2015)
99. Single-crystalline Copper Nano-octahedra
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S. -C. Lu, M. -C. Hsiao, M. Yorulmaz, L. -Y. Wang, P. -Y. Yang, S. Link, W. -S. Chang, and H. -Y. Tuan
Chem. Mater. 27(24), 8185 (2015)
98. From tunable core-shell nanoparticles to plasmonic drawbridges: Active control of nanoparticle optical properties
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C. P. Byers, H. Zhang, D. F. Swearer, M. Yorulmaz, B. S. Hoener, D. Huang, A. Hoggard, W. –S. Chang, P. Mulvaney, E. Ringe, N. J. Halas, P. Nordlander, S. Link, and C. F. Landes
Science Advances 1(11) (2015)
2014
97. Influence of Cross Sectional Geometry on Surface Plasmon Polariton Propagation in Gold Nanowires
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S. Nauert, A. Paul, Y.-R. Zhen, D. Solis, L. Vigderman, W.-S. Chang, E. R. Zubarev, P. Nordlander, and S. Link
ACS Nano 8, 572 (2014)
96. Dye-Assisted Gain of Strongly Confined Surface Plason Polaritons in Silver Nanowires
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A. Paul, Y -R. Zhen, Y. Wang, W. -S. Chang, Y. Xia, P. Nordlander, and S. Link
Nano Lett. 14, 3628 (2014)
95. Impurity-Induced Plasmon Damping in Individual Cobalt-Doped Hollow Au Nanoshells
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C. A. Thibodeaux, V. Kulkarni, W.-S. Chang, O. Neumann, Y. Cao, B. Brinson, C. Ayala-Orozco, C.-W. Chen, E. Morosan, S. Link, P. Nordlander, and N. J. Halas
J. Phys. Chem. C 118, 14056 (2014)
94. Single-Particle Spectroscopy Reveals Heterogeneity in Electrochemical Tuning of the Localized Surface Plasmon
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C. P. Byers, B. S. Hoener, W.-S. Chang, M. Yorulmaz, S. Link, and C. F. Landes
J. Phys. Chem. B 118, 14047 (2014)
93. Quadrupole-Enhanced Raman Scattering
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S. P. Hastings, P. Swanglap, Z. Qian, Y. Fang, S. -J. Park, S. Link, N. Engheta, and Z. Fakhraai
ACS Nano 8, 9025 (2014)
92. Plasmonic polymers unraveled through single particle spectroscopy
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L. S. Slaughter, L.-Y. Wang, B. A. Willingham, J. M. Olson,P. Swanglap, S. Dominguez-Medina, and S. Link
Nanoscale 4, 11451 (2014)
91. Surface Plasmons as Versatile Analytical Tools
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S. Link
J. Phys. Chem. Lett. 5, 3307 (2014)
90. Vivid, Full-color Aluminum Plasmonic Pixels
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J. Olson, A. Manjavacas, L. Liu, W.-S. Chang, B. Foerster, N. S. King, M. W. Knight, P. Nordlander, N. J. Halas, and S. Link
Proc. Natl. Acad. Sci. USA 111, 14348 (2014)
2013
89. Mechanistic Study of Bleach-Imaged Plasmon Propagation (BlIPP)
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D. Solis, Jr., A. Paul, W.-S. Chang, and S. Link
J. Phys. Chem. B, 117, 4611 (2013)
88. Synthesis and Single-Molecule Imaging of Highly Mobile Adamantane-Wheeled Nanocars
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P.-L. E. Chu, L.-Y. Wang, S. Khatua, A. B. Kolomeisky, S. Link, and J. M. Tour
ACS Nano 7, 1, 35 (2013)
87. Improved Analysis for Determining Diffusion Coefficients from Short Single-Molecule Trajectories with Photoblinking
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B. Shuang, C. P. Byers, L. Kisley, L.-Y. Wang, J. Zhao, H. Morimura, S. Link, and C. F. Landes
Langmuir 29, 228 (2013)
86. Detailed mechanism for the orthogonal polarization switching of gold nanorod plasmons
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J. Olson, P. Swanglap, W.-S. Chang, S. Khatua, D. Solis, and S. Link
Phys. Chem. Chem. Phys. 15, 419 (2013)
85. Adsorption of a Protein Monolayer via Hydrophobic Interactions Prevents Nanoparticle Aggregation under Harsh Environmental Conditions
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S. Dominguez-Medina, J. Blankenburg, J. Olson, C. F. Landes, and S. Link
ACS Sustainable Chemistry & Engineering 1, 7, 833 (2013)
84. A Kirchhoff solution to plasmon hybridization
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B. Willingham and S. Link
Appl. Phys. B 13, 4, 519 (2013)
83. Chiral plasmonics of self-assembled nanorod dimers
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W. Ma, H. Kuang, L. Wang, L. Xu, W.-S. Chang, H. Zhang, M. Sun, Y. Zhu, Y. Zhao, L. Liu, C. Xu, S. Link, and N. A. Kotov
Scientific Reports 3, 1934 (2013)
82. Turning the Corner: Efficient Energy Transfer in Bent Plasmonic Nanoparticle Chain Waveguides
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D. Solis, A. Paul, J. Olson, L. S. Slaughter, P. Swanglap, W.-S. Chang, and S. Link
Nano Lett. 13, 4779 (2013)
81. Using the Plasmon Linewidth to Calculate the Time and Efficiency of Electron Transfer between Gold Nanorods and Graphene
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A. Hoggard, L.-Y. Wang, L. Ma, Y. Fang, G. You,J. Olson, Z. Liu, W.-S. Chang, P. M. Ajayan, and S. Link
ACS Nano 7, 11209 (2013)
2012
80. Electromagnetic Energy Transport in Nanoparticle Chains via Dark Plasmon Modes
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D. Solis, B. Willingham, S. L. Nauert, L. S. Slaughter, J. Olson, P. Swanglap, W.-S. Chang, and S. Link
Nano Lett. 12, 1349 (2012)
79. Synthesis and Optical Properties of Spiky Gold Nanoshells
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B. L. Sanchez-Gaytan, P. Swanglap, T. J. Lamkin, Z. Fakhraai, S. Link, and S.-J. Park
J. Phys. Chem. C 116, 10318 (2012)
78. Radiative and Nonradiative Properties of Single Plasmonic Nanoparticles and Their Assemblies
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W.-S. Chang, B. Willingham, L. S. Slaughter, S. Dominguez-Medina, P. Swanglap, and S. Link
Acc. Chem. Res. 45, 1936 (2012)
77. A Plethora of Plasmonics from the Laboratory for Nanophotonics at Rice University
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N. J. Halas, S. Lal, S. Link, W.-S. Chang, D. Natelson, J. Hafner, and P. Nordlander
Adv. Mater. 24, 4842 (2012)
76. In situ measurement of bovine serum albumin interaction with gold nanospheres
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S. Dominguez-Medina, S. McDonough, P. Swanglap, C. F. Landes, and S. Link
Langmuir 28, 9131 (2012)
75. Enhancing the Sensitivity of Single Particle Photothermal Imaging with Thermotropic Liquid Crystals
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W.-S. Chang and S. Link
J. Phys. Chem. Lett. 3, 1393 (2012)
74. Toward Plasmonic Polymers
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S. Slaughter, B. A. Willingham, W.-S. Chang, M. H. Chester, N. Ogden, and S. Link
Nano Lett. 12, 3967 (2012)
73. Plasmon emission quantum yield of single gold nanorods as a function of aspect ratio
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Y. Fang, W.-S. Chang, B. Willingham, P. Swanglap, S. Dominguez-Medina, and S. Link
ACS Nano 6, 7177 (2012)
72. Identification of Higher Order Long Range Surface Plasmon Polariton Modes in Chemically Prepared Gold Nanowires
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A. Paul, D. Solis, Jr., K. Bao, W.-S. Chang, S. Nauert, L. Vidgerman, E. R. Zubarev, P. Nordlander, and S. Link
ACS Nano 6, 8105 (2012)
71. A Plasmonic Fano Switch
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W.-S. Chang, J. B. Lassiter, P. Swanglap, H. Sobhani, S. Khatua, P. Nordlander, N. J. Halas, and S. Link
Nano Lett. 12, 4977 (2012)
70. Noble Metal Nanowires: From Plasmon Waveguides to Passive and Active Devices
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S. Lal, J. H. Hafner, N. J. Halas, S. Link, and P. Nordlander
Acc. Chem. Res. 45, 1887 (2012)
2011
69. Energy Transport in Metal Nanoparticle Chains via Sub-Radiant Plasmon Modes
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B. Willingham and S. Link
Opt. Express. 19, 6450 (2011)
68. Plasmons in strongly coupled metallic nanostructures
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N. J. Halas, S. Lal, W.-S. Chang, S. Link, and P. Nordlander
Chem. Rev. 111, 3913 (2011)
67. Seeing double: Coupling between substrate image charges and collective plasmon modes in self-assembled nanoparticle superstructures
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B. P. Swanglap, L. S. Slaughter, W.-S. Chang, B. Willingham, B. P. Khanal, E. R. Zubarev, and S. Link
ACS Nano 5, 4892 (2011)
66. One-photon plasmon luminescence and its application to correlation spectroscopy as a probe for rotational and translational dynamics of gold nanorods
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A. Tcherniak, S. Dominguez-Medina, W.-S. Chang, P. Swanglap, L. S. Slaughter, C. F. Landes, and S. Link
J. Phys. Chem. C 115, 15938 (2011)
65. Characterizing Plasmons in Nanoparticles and Their Assemblies with Single Particle Spectroscopy
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L. S. Slaughter, W.-S. Chang, and S. Link
J. Phys. Chem. Lett. 2, 2015 (2011)
64. Active Modulation of Nanorod Plasmons
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S. Khatua, W.-S. Chang, P. Swanglap, J. Olson, and S. Link
Nano Lett. 11, 3797 (2011)
63. Low absorption losses of strongly coupled surface plasmons in nanoparticle assemblies
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W.-S. Chang, B. Willingham, L. S. Slaughter, B. P. Khanal, E. R. L. Vigderman, E. R Zubarev, and S. Link
Proc. Natl. Acad. Sci. USA 108, 19879 (2011)
2010
62. Plasmonic Nanoparticles – Liquid Crystal Composites
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S. Khatua, P. Manna, W.-S. Chang, A. Tcherniak, E. Friedlander, E. R. Zubarev, and S. Link
J. Phys. Chem. C 114 7251 (2010)
61. Synthesis of Fluorescent Dye-Tagged Nanomachines for Single Molecule Fluorescence Spectroscopy
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G. Vives, J. M. Guerrero, J. Godoy, S. Khatua, Y.-P. Wang, J. L. Kiappes, S. Link, and J. M. Tour
J. Org. Chem. 75, 6631 (2010)
60. Wide-field four-channel fluorescence imager for biological applications
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M. Thakur, D. Melnik, H. Barnett, K. Daly, C. H. Moran, W-S. Chang, S. Link, C. T. Bucher, C. Kittrell, and R. F. Curl
J. Biomed. Opt. 15, 026013 (2010)
59. Influence of the substrate on the mobility of individual nanocars
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S. Khatua, J. Godoy, J. M. Tour, and S. Link
J. Phys. Chem. Lett. 1, 3288 (2010)
58. Plasmonic Nanorod Absorbers as Orientation Sensors
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W.-S. Chang, J. W. Ha, L. S. Slaughter, and S. Link
Proc. Natl. Acad. Sci. USA 107, 2781 (2010)
57. Single-particle spectroscopy of gold nanorods beyond the quasi-static limit: Varying the width at constant aspect ratio
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L. S. Slaughter, W.-S. Chang, P. Swanglap, A. Tcherniak, B. P. Khanal, E. R. Zubarev, and S. Link
J. Phys. Chem. C 114, 4934 (2010)
56. Probing a century old prediction one plasmonic particle at a time
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A. Tcherniak, J. W. Ha, S. Dominguez-Medina, L. S. Slaughter, and S. Link
Nano Lett. 10, 1398 (2010)
55. Effects of Symmetry Breaking and Conductive Overlap on the Plasmon Coupling in Gold Nanorod Dimers
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L. S. Slaughter, Y. Wu, B. Willingham, P. Nordlander, and S. Link
ACS Nano 4, 4657 (2010)
54. Bleach-Imaged Plasmon Propagation (BlIPP) in Single Gold Nanowires
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D. Solis, W.-S. Chang, B. P. Khanal, K. Bao, P. Nordlander, E. Zubraev, and S. Link
Nano Lett. 10, 3482 (2010)
2009
53. Accurately Determining Single Molecule Trajectories of Molecular Motion on Surfaces
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K. Claytor, S. Khatua, J. M. Guerrero, J. M. Tour, and S. Link
J. Chem. Phys. 130, 164710 (2009)
52. One-Dimensional Coupling of Gold Nanoparticle Plasmons in Self-Assembled Ring Superstructures
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W.-S. Chang, L. S. Slaughter, B. P. Khanal, P. Manna, E. R. Zubarev, and S. Link
Nano Lett. 9, 1152 (2009)
51. Micrometer-Scale Translation and Monitoring of Individual Nanocars on Glass
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S. Khatua, J. M. Guerrero, K. Claytor, G. Vives, A. B. Kolomeisky, J. M. Tour, and S. Link
ACS Nano 3, 351 (2009)
50. Fluorescence correlation spectroscopy of magnetite nanocrystal diffusion
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A. Tcherniak, A. Prakash, J. T. Mayo, V. Colvin, and S. Link
J. Phys. Chem. C 113, 844 (2009)
49. Fluorescence correlation spectroscopy: Criteria for analysis in complex systems
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A. Tcherniak, C. Reznik, S. Link, and C. F. Landes
Anal. Chem. 81, 746 (2009)
2008
48. Chain-length dependent nematic ordering of conjugated polymers in a liquid crystal solvent
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A. Tcherniak, D. Solis, S. Khatua, A. A. Tangonan, T. R. Lee, and S. Link
J. Am. Chem. Soc. 130, 12262 (2008)
47. Single molecule spectroscopy of conjugated polymer chains in an electric field-aligned liquid crystal
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W.-S. Chang, S. Link, A. Yethiraj, and P. F. Barbara
J. Phys. Chem. B 112, 448 (2008)
2007
46. Nano-optics from sensing to waveguiding
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S. Lal, S. Link, and N. J. Halas
Nat. Photonics 1, 641 (2007)
45. Effect of electric field on the photoluminescence intensity of single CdSe nanocrystals
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S.-J. Park, S. Link, W. L. Miller, A. Gesquiere, and P. F. Barbara
Chem. Phys. 341, 169 (2007)
44. Structure and dynamics of conjugated polymers in liquid crystalline solvents
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P. F. Barbara, W.-S. Chang, S. Link, G. D. Scholes, and A. Yethiraj
Ann. Rev. Phys. Chem. 58, 565 (2007)
2006
43. Anisotropic diffusion of elongated and aligned polymer chains in a nematic solvent
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S. Link, W.-S. Chang, A. Yethiraj, and P. F. Barbara
J. Phys. Chem. B 110, 19799-19803 (2006)
42. Orthogonal Orientations for Solvation of Polymer Molecules in Smectic Solvents
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S. Link, W.-S. Chang, A. Yethiraj, and P. F. Barbara
Phys. Rev. Lett. 96, 017801 (2006)
41. Numerical simulations of optical-parametric-amplification cross-correlation frequency-resolved optical gating
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X. Liu, A. P. Shreenath, M. Kimmel, R. Trebino, A. V. Smith, and S. Link
J. Opt. Soc. Am. B 23, 318 (2006)
2005
40. Nematic solvation of segmented polymer chains
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S. Link, D. Hu, W.-S. Chang, G. D. Scholes, and P. F. Barbara
Nano Lett. 5, 1757 (2005)
39. Simulation of the optical absorption spectra of gold nanorods as a function of their aspect ratio and the effect of the medium dielectric constant
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S. Link, M. B. Mohamed, and M. A. El-Sayed
J. Phys. Chem. B 109, 10531 (2005)
2004
38. Picosecond self-induced thermal lensing from colloidal silver nanodisks
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M. Maillard, M.-P. Pileni, S. Link, and M. A. El-Sayed
J. Phys. Chem. B 108, 5230 (2004)
37. Optical spectroscopy of surface plasmons in metal nanoparticles. In Semiconductor and Metal Nanocrystals: Synthesis and Electronic and Optical Properties
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S. Link and M. A. El-Sayed
V. I. Klimov (ed.), Marcel Dekker (New York, 2004)
2003
36. Measurement of the intensity and phase of attojoule femtosecond light pulses using optical-parametric-amplification cross-correlation frequency-resolved optical gating
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J.-Y. Zhang, A. P. Shreenath, M. Kimmel, E. Zeek, R. Trebino, and S. Link
Opt. Express 11, 601 (2003)
35. Why is the thermalization of excited electrons in semiconductor nanoparticles so rapid? Studies on CdSe nanoparticles
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Q. Darugar, C. F. Landes, S. Link, A. W. Schill, and M. A. El-Sayed
Chem. Phys. Lett. 373, 284 (2003)
34. Optical properties and ultrafast dynamics in metallic nanocrystals
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S. Link and M. A. El-Sayed
Ann. Rev. Phys. Chem. 54, 331 (2003)
33. Medium effect on the electron cooling dynamics in gold nanorods and truncated tetrahedral
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S. Link, D. J. Hathcock, B. Nikoobakht, and M. A. El-Sayed
Adv. Mater. 15, 393 (2003)
2002
32. Room temperature optical gain in CdSe nanorod solutions
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S. Link and M. A. El-Sayed
J. Appl. Phys. 92, 6799 (2002)
31. Determination of the localization times of the electrons and holes in the HgS well in a CdS/HgS/CdS quantum dot quantum well nanoparticle
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M. Braun, S. Link, C. Burda, and M. A. El-Sayed
Phys. Rev. B 66, 205312 (2002)
30. Comparison of the dynamics of the primary events of bacteriorhodopsin in its trimeric and monomeric states
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J. Wang, S. Link, C. D. Heyes, and M. A. El-Sayed
Biophys. J. 83, 1557 (2002)
29. The pump power dependence of the femtosecond relaxation of CdSe nanoparticles observed in the spectral range from visible to infrared
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C. Burda, S. Link, M. B. Mohamed, and M. A. El-Sayed
J. Chem. Phys. 116, 3828 (2002)
28. Some properties of spherical and rod-shaped semiconductor and metal nanocrystals
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C. F. Landes, S. Link, M. B. Mohamed, B. Nikoobakht, and M. A. El-Sayed
Pure Appl. Chem. 74, 1675 (2002)
27. Transition from nanoparticle to molecular behavior: A femtosecond transient absorption study of a size-selected 28 atom gold cluster
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S. Link, M. A. El-Sayed, T. G. Schaaff, and R. L. Whetten
Chem. Phys. Lett. 356, 240 (2002)
26. Visible to infrared luminescence from a 28 Atom gold cluster
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S. Link, A. Beeby, S. FitzGerald, M. A. El-Sayed, T. G. Schaaff, and R. L. Whetten
J. Phys. Chem. B 106, 3410 (2002)
25. Hot electron relaxation dynamics of gold nanoparticles embedded in MgSO4 powder compared to solution
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S. Link, A. Furube, M. B. Mohamed, T. Asahi, H. Masuhara, and M. A. El-Sayed
J. Phys. Chem. B 106, 945 (2002)
24. Transfer times of electrons and holes across the interface in CdS/HgS/CdS quantum dot quantum well nanoparticles
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M. Braun,S. Link, C. Burda, and M. A. El-Sayed
Chem. Phys. Lett. 361, 446 (2002)
2001
23. The Relaxation pathways of CdSe nanoparticles monitored with femtosecond time-resolution from the visible to the IR: Assignment of the transient features by carrier quenching
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C. Burda, S. Link, M. B. Mohamed, and M. A. El-Sayed
J. Phys. Chem. B 105, 12286 (2001)
22. Hot electron and phonon dynamics of gold nanoparticles embedded in a gel matrix
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M. B. Mohamed, T. S. Ahmadi, S. Link, M. Braun, and M. A. El-Sayed
Chem. Phys. Lett. 343, 55 (2001)
21. Spectroscopic determination of the melting energy of a gold nanorod
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S. Link and M. A. El-Sayed
J. Chem. Phys. 114, 2362 (2001)
2000
20. How does a gold nanorod melt?
For more info
S. Link, Z. L. Wang, and M. A. El-Sayed
J. Phys. Chem. B 104, 7867 (2000)
19. Shape and size dependence of radiative, nonradiative, and photothermal properties of gold nanocrystals
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S. Link and M. A. El-Sayed
Int. Rev. Phys. Chem. 19, 409 (2000)
18. Laser-induced shape changes of colloidal gold nanorods using femtosecond and nanosecond laser pulses
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S. Link, C. Burda, B. Nikoobakht, and M. A. El-Sayed
J. Phys. Chem. B 104, 6152 (2000)
17. The lightning gold nanorods: fluorescence enhancement of over a million compared to the gold metal
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M. B. Mohamed, V. Volkov, S. Link, and M. A. El-Sayed
Chem. Phys. Lett. 317, 517 (2000)
16. Femtosecond transient absorption dynamics of colloidal gold nanorods: Shape independence of the electron-phonon relaxation
For more info
S. Link, C. Burda, M. B. Mohamed, B. Nikoobakht, and M. A. El-Sayed
Phys. Rev. B 61, 6086 (2000)
15. Femtosecond dynamics of a simple merocyanine dye: Does deprotonation compete with isomerization?
For more info
C. Burda, M. H. Abdel-Kader, S. Link, and M. A. El-Sayed
J. Am. Chem. Soc. 122, 6720 (2000)
14. Optical spectroscopy of nanophase materials. In Characterization of Nanophase Materials
For more info
C. Burda, T. C. Green, C. F. Landes, S. Link, R. B. Little, J. M. Petroski, and M. A. El-Sayed
Z. L. Wang (ed.), Wiley-VCH (New York, 2000)
1999
13. How long does it take to melt a nanorod? A femtosecond pump-probe absorption spectroscopic study
For more info
S. Link, C. Burda, B. Nikoobakht, and M. A. El-Sayed
Chem. Phys. Lett. 315, 12 (1999)
12. Spectral properties and relaxation dynamics of surface plasmon electronic oscillations in gold and silver nanodots and nanorods
For more info
S. Link and M. A. El-Sayed
J. Phys. Chem. B 103, 8410 (1999)
11. Crystallographic facets and shapes of gold nanorods of different aspect ratios
For more info
Z. L. Wang, M. B. Mohamed, S. Link, and M. A. El-Sayed
Surf. Sci. 440, L809 (1999)
10. New transient absorption observed in the spectrum of colloidal CdSe nanoparticles pumped with high-power femtosecond pulses
For more info
C. Burda, S. Link, T. C. Green, and M. A. El-Sayed
J. Phys. Chem. B 103, 10775 (1999)
9. Electron dynamics in gold and gold-silver nanoparticles: The influence of a non-equilibrium electron distribution and the size dependence of the electron-phonon relaxation
For more info
S. Link, C. Burda, Z. L. Wang, and M. A. El-Sayed
J. Chem. Phys. 111, 1255 (1999)
8. Size and temperature dependence of the plasmon absorption of colloidal gold nanoparticles
For more info
S. Link and M. A. El-Sayed
J. Phys. Chem. B 103, 4212 (1999)
7. Alloy formation of gold-silver nanoparticles and the dependence of the plasmon absorption on their composition
For more info
S. Link, Z. L. Wang, and M. A. El-Sayed
J. Phys. Chem. B 103, 3529 (1999)
6. Electron shuttling across the interface of CdSe nanoparticles monitored by femtosecond laser spectroscopy
For more info
C. Burda, T. C. Green, S. Link, and M. A. El-Sayed
J. Phys. Chem. B 103, 1783 (1999)
5. Simulation of the optical absorption spectra of gold nanorods as a function of their aspect ratio and the effect of the medium dielectric constant
For more info
S. Link, M. B. Mohamed, and M. A. El-Sayed
J. Phys. Chem. B 103, 3073 (1999)
4. Laser photothermal melting and fragmentation of gold nanorods: Energy and laser pulse-width dependence
For more info
S. Link, C. Burda, M. B. Mohamed, B. Nikoobakht, and M. A. El-Sayed
J. Phys. Chem. A 103, 1165 (1999)
1998
3. Thermal reshaping of gold nanorods in micelles
For more info
M. B. Mohamed, K. Z. Ismail, S. Link, and M. A. El-Sayed
J. Phys. Chem. B 102, 9370 (1998)
2. Charge separation effects on the rate of nonradiative relaxation processes in quantum dot – quantum well heteronanostructures
For more info
R. B. Little, C. Burda, S. Link, S. L. Logunov, and M. A. El-Sayed
J. Phys. Chem. A 102, 6581 (1998)
1997
1. Peri-arylated acenes: From one-dimensional to novel multidimensional NLO-phores
For more info
W. Grahn, A. Bahl, S. Link, S. Stadler, R. Dietrich, K. Meerholz, and C. Braeuchle
Proceedings of SPIE – The International Society for Optical Engineering (1997)