ACS Publications. Most Trusted. Most Cited. Most Read
Electrochemical Charging of Single Gold Nanorods
My Activity

Figure 1Loading Img
    Communication

    Electrochemical Charging of Single Gold Nanorods
    Click to copy article linkArticle link copied!

    View Author Information
    School of Chemistry and Bio21 Institute, University of Melbourne, Parkville, VIC, 3010, Australia
    Other Access OptionsSupporting Information (1)

    Journal of the American Chemical Society

    Cite this: J. Am. Chem. Soc. 2009, 131, 41, 14664–14666
    Click to copy citationCitation copied!
    https://doi.org/10.1021/ja905216h
    Published September 25, 2009
    Copyright © 2009 American Chemical Society

    Abstract

    Click to copy section linkSection link copied!
    Abstract Image

    Metal nanocrystals are commonly used to mediate important chemical reactions such as water splitting and CO oxidation. To investigate such redox reactions in detail, it would be useful to be able to carry out electrochemistry on single metal nanocrystals. We report here that the surface plasmon resonance of a single gold nanocrystal can be reversibly and rapidly tuned by tens of nanometers electrochemically. The spectral shifts are more sensitive for elongated morphologies such as rods and lead to color changes perceptible by eye.

    Copyright © 2009 American Chemical Society

    Read this article

    To access this article, please review the available access options below.

    Get instant access

    Purchase Access

    Read this article for 48 hours. Check out below using your ACS ID or as a guest.

    Recommended

    Access through Your Institution

    You may have access to this article through your institution.

    Your institution does not have access to this content. Add or change your institution or let them know you’d like them to include access.

    Supporting Information

    Click to copy section linkSection link copied!

    Experimental details. This material is available free of charge via the Internet at http://pubs.acs.org.

    Terms & Conditions

    Most electronic Supporting Information files are available without a subscription to ACS Web Editions. Such files may be downloaded by article for research use (if there is a public use license linked to the relevant article, that license may permit other uses). Permission may be obtained from ACS for other uses through requests via the RightsLink permission system: http://pubs.acs.org/page/copyright/permissions.html.

    Cited By

    Click to copy section linkSection link copied!
    Citation Statements
    Explore this article's citation statements on scite.ai

    This article is cited by 240 publications.

    1. Pavel Malakhovsky, Mikhail Erofeev, Mikhail Artemyev. Charge-Related Spectral Shift of Localized Surface Plasmon Resonance in Silver Nanoplates Induced by Deprotonation and Complexation of Surface Carboxyl Groups with Metal Cations. The Journal of Physical Chemistry C 2024, 128 (51) , 21751-21760. https://doi.org/10.1021/acs.jpcc.4c06882
    2. Jiyuan Yu, Zifei Chen, Heyou Zhang, James A. Hutchison, Paul Mulvaney, Arun Ashokan. Surface Plasmon Modulation in Cu3–xP Nanocrystals. Nano Letters 2024, 24 (46) , 14695-14701. https://doi.org/10.1021/acs.nanolett.4c03898
    3. Mukunthan Ramasamy, Ji Won Ha. Single-Particle Spectroelectrochemistry: Revealing the Electrochemical Tuning Mechanism of Chemical Interface Damping in 1,2-Benzenedithiol-Adsorbed Single Gold Nanorods. Analytical Chemistry 2024, 96 (45) , 18043-18051. https://doi.org/10.1021/acs.analchem.4c03511
    4. Adriana Teixeira do Nascimento, Alexandre X. Mendes, Serena Duchi, Daniela Duc, Lilith C. Aguilar, Anita F. Quigley, Robert M. I. Kapsa, David R. Nisbet, Paul R. Stoddart, Saimon M. Silva, Simon E. Moulton. Wired for Success: Probing the Effect of Tissue-Engineered Neural Interface Substrates on Cell Viability. ACS Biomaterials Science & Engineering 2024, 10 (6) , 3775-3791. https://doi.org/10.1021/acsbiomaterials.4c00111
    5. Noreen E. Gentry, Aiko Kurimoto, Kai Cui, Jamie L. Cleron, Claire M. Xiang, Sharon Hammes-Schiffer, James M. Mayer. Hydrogen on Colloidal Gold Nanoparticles. Journal of the American Chemical Society 2024, 146 (21) , 14505-14520. https://doi.org/10.1021/jacs.4c00507
    6. My Nghe Tran, Myriam Moreau, Ahmed Addad, Adrien Teurtrie, Thomas Roland, Vincent de Waele, Marc Dewitte, Louis Thomas, Gaëtan Levêque, Chunyang Dong, Pardis Simon, Karima Ben Tayeb, David Mele, Vitaly Ordomsky, Bruno Grandidier. Boosting Gas-Phase TiO2 Photocatalysis with Weak Electric Field Strengths of Volt/Centimeter. ACS Applied Materials & Interfaces 2024, 16 (12) , 14852-14863. https://doi.org/10.1021/acsami.3c19031
    7. Mukunthan Ramasamy, Ji Won Ha. Single-Particle Spectroelectrochemistry: Promoting the Electrocatalytic Activity of Gold Nanorods via Oxygen Plasma Treatment without Structural Deformation. Analytical Chemistry 2024, 96 (2) , 737-745. https://doi.org/10.1021/acs.analchem.3c03850
    8. Meng Zhang, Rui Wang, Zhuan-Yun Cai, Cheng Zong, He-Tian Qiao, De-Yin Wu, Zhong-Qun Tian. Electrochemical Surface-Enhanced Raman Spectroscopy for Energy Modulation of Surface Plasmon-Mediated Photoelectrochemical Reactions of para-Aminothiophenol on Silver Nanoparticle-Modified Electrodes. The Journal of Physical Chemistry C 2023, 127 (46) , 22590-22599. https://doi.org/10.1021/acs.jpcc.3c05178
    9. Hyuncheol Oh, Emily K. Searles, Subhojyoti Chatterjee, Zhenyang Jia, Stephen A. Lee, Stephan Link, Christy F. Landes. Plasmon Energy Transfer Driven by Electrochemical Tuning of Methylene Blue on Single Gold Nanorods. ACS Nano 2023, 17 (18) , 18280-18289. https://doi.org/10.1021/acsnano.3c05387
    10. Mukunthan Ramasamy, Ji Won Ha. Single-Particle Spectroelectrochemistry: Electrochemical Approaches for Tuning Chemical Interfaces and Plasmon Damping in Single Gold Nanorods. The Journal of Physical Chemistry Letters 2023, 14 (25) , 5768-5775. https://doi.org/10.1021/acs.jpclett.3c01424
    11. Hao Zhu, Zheng Cai, Zixuan Chen, Yun Chen, Jun-Jie Zhu. Label-Free Quantification of DNA Hybridization Kinetics and Affinity Enabled by an Electro-Optical Modulation on Single Nanoparticles. Analytical Chemistry 2023, 95 (23) , 9034-9042. https://doi.org/10.1021/acs.analchem.3c01257
    12. Partha Saha, Md. Maksudur Rahman, Caleb M. Hill. Electrocatalysis at Individual Colloidal Nanoparticles: A Quantitative Survey of Four Geometries via Electrochemical Cell Microscopy. The Journal of Physical Chemistry C 2023, 127 (19) , 9059-9066. https://doi.org/10.1021/acs.jpcc.3c01427
    13. Yuming Zhao, Chuan Xiao, Elieser Mejia, Aditya Garg, Junyeob Song, Amit Agrawal, Wei Zhou. Voltage Modulation of Nanoplasmonic Metal Luminescence from Nano-Optoelectrodes in Electrolytes. ACS Nano 2023, 17 (9) , 8634-8645. https://doi.org/10.1021/acsnano.3c01491
    14. Mohsen Elabbadi, Christina Boukouvala, Elizabeth R. Hopper, Jérémie Asselin, Emilie Ringe. Synthesis of Controllable Cu Shells on Au Nanoparticles with Electrodeposition: A Systematic in Situ Single Particle Study. The Journal of Physical Chemistry C 2023, 127 (10) , 5044-5053. https://doi.org/10.1021/acs.jpcc.2c08910
    15. Emily K. Searles, Eric Gomez, Stephen Lee, Behnaz Ostovar, Stephan Link, Christy F. Landes. Single-Particle Photoluminescence and Dark-Field Scattering during Charge Density Tuning. The Journal of Physical Chemistry Letters 2023, 14 (2) , 318-325. https://doi.org/10.1021/acs.jpclett.2c03566
    16. Jiachen Zhang, Lei Zhang, Qun Zhang, Yi Luo. Unveiling a Counterintuitive Intermode Interplay in a Prototype Plasmonic Nanosystem. The Journal of Physical Chemistry Letters 2022, 13 (44) , 10388-10394. https://doi.org/10.1021/acs.jpclett.2c02934
    17. Ningning He, Shuxian Wei, Taiping Hu, Yixing Ye, Yunyu Cai, Jun Liu, Pengfei Li, Changhao Liang. Surface-Plasmon-Mediated Alloying for Monodisperse Au–Ag Alloy Nanoparticles in Liquid. Inorganic Chemistry 2022, 61 (31) , 12449-12457. https://doi.org/10.1021/acs.inorgchem.2c01975
    18. Gang Wu, Xiaoli Zhou, Wen-Li Lv, Chen Qian, Xian-Wei Liu. Real-Time Plasmonic Imaging of the Compositional Evolution of Single Nanoparticles in Electrochemical Reactions. Nano Letters 2022, 22 (11) , 4383-4391. https://doi.org/10.1021/acs.nanolett.2c00831
    19. Andrea Rogolino, Nathalie Claes, Judit Cizaurre, Aimar Marauri, Alba Jumbo-Nogales, Zuzanna Lawera, Joscha Kruse, María Sanromán-Iglesias, Ibai Zarketa, Unai Calvo, Elisa Jimenez-Izal, Yury P. Rakovich, Sara Bals, Jon M. Matxain, Marek Grzelczak. Metal–Polymer Heterojunction in Colloidal-Phase Plasmonic Catalysis. The Journal of Physical Chemistry Letters 2022, 13 (10) , 2264-2272. https://doi.org/10.1021/acs.jpclett.1c04242
    20. Jun Zhou, Wei He, Hui Liu, Cheng Zhi Huang. Energy Flow during the Plasmon Resonance-Driven Photocatalytic Reactions on Single Nanoparticles. ACS Catalysis 2022, 12 (2) , 847-853. https://doi.org/10.1021/acscatal.1c04919
    21. Pin Lyu, Son C. Nguyen. Effect of Photocharging on Catalysis of Metallic Nanoparticles. The Journal of Physical Chemistry Letters 2021, 12 (51) , 12173-12179. https://doi.org/10.1021/acs.jpclett.1c03671
    22. Zixiao Wang, Ruihong Liu, Hong-Yuan Chen, Hui Wang. Plasmonic Imaging of Tuning Electron Tunneling Mediated by a Molecular Monolayer. JACS Au 2021, 1 (10) , 1700-1707. https://doi.org/10.1021/jacsau.1c00292
    23. Zhixuan Lu, Xiang Wu, Ningyu Chen, Maofeng Cao, Matthew M. Sartin, Bin Ren. Photoinduced Charge Transfer from a Semiconductor to a Metal Probed at the Single-Nanoparticle Level. ACS Energy Letters 2021, 6 (10) , 3473-3480. https://doi.org/10.1021/acsenergylett.1c01581
    24. Jae-Ho Kim, Seungsang Cha, Yoonhee Kim, Jiwoong Son, Jeong-Eun Park, Jeong-Wook Oh, Jwa-Min Nam. Nontrivial, Unconventional Electrochromic Behaviors of Plasmonic Nanocubes. Nano Letters 2021, 21 (18) , 7512-7518. https://doi.org/10.1021/acs.nanolett.1c01639
    25. Yun Peng Ma, Qian Li, Jun Bo Luo, Cheng Zhi Huang, Jun Zhou. Weak Reaction Scatterometry of Plasmonic Resonance Light Scattering with Machine Learning. Analytical Chemistry 2021, 93 (35) , 12131-12138. https://doi.org/10.1021/acs.analchem.1c02813
    26. Arun Ashokan, Paul Mulvaney. Spectroelectrochemistry of Colloidal CdSe Quantum Dots. Chemistry of Materials 2021, 33 (4) , 1353-1362. https://doi.org/10.1021/acs.chemmater.0c04416
    27. Jia Liu, Zhuan-Yun Cai, Wei-Xin Sun, Jia-Zheng Wang, Xiao-Ru Shen, Chao Zhan, Rajkumar Devasenathipathy, Jian-Zhang Zhou, De-Yin Wu, Bing-Wei Mao, Zhong-Qun Tian. Plasmonic Hot Electron-Mediated Hydrodehalogenation Kinetics on Nanostructured Ag Electrodes. Journal of the American Chemical Society 2020, 142 (41) , 17489-17498. https://doi.org/10.1021/jacs.0c07027
    28. Hyuncheol Oh, Youngchan Park, Hyunjoon Song. Tracking Underpotential Deposition of Copper on Individual Silver Nanocubes by Real-Time Single-Particle Plasmon Scattering Imaging. The Journal of Physical Chemistry C 2020, 124 (37) , 20398-20409. https://doi.org/10.1021/acs.jpcc.0c05258
    29. Sungyeon Heo, Shin Hum Cho, Clayton J. Dahlman, Ankit Agrawal, Delia J. Milliron. Influence of Crystalline and Shape Anisotropy on Electrochromic Modulation in Doped Semiconductor Nanocrystals. ACS Energy Letters 2020, 5 (8) , 2662-2670. https://doi.org/10.1021/acsenergylett.0c01236
    30. Tsz Him Chow, Yunhe Lai, Wenzheng Lu, Nannan Li, Jianfang Wang. Substrate-Enabled Plasmonic Color Switching with Colloidal Gold Nanorings. ACS Materials Letters 2020, 2 (7) , 744-753. https://doi.org/10.1021/acsmaterialslett.0c00182
    31. Xiao Ying Gu, Jia Jun Liu, Peng Fei Gao, Yuan Fang Li, Cheng Zhi Huang. Gold Triangular Nanoplates Based Single-Particle Dark-Field Microscopy Assay of Pyrophosphate. Analytical Chemistry 2019, 91 (24) , 15798-15803. https://doi.org/10.1021/acs.analchem.9b04093
    32. Asha Singh, Sabina Gurung, Rama Chari, J. Jayabalan. Counting the Electrons Hopping in Ultrafast Time Scales in an Ag–CdTe Hybrid Nanostructure. The Journal of Physical Chemistry C 2019, 123 (47) , 28584-28592. https://doi.org/10.1021/acs.jpcc.9b07426
    33. Sandeep Ghosh, Hsin-Che Lu, Shin Hum Cho, Thejaswi Maruvada, Murphie C. Price, Delia J. Milliron. Colloidal ReO3 Nanocrystals: Extra Re d-Electron Instigating a Plasmonic Response. Journal of the American Chemical Society 2019, 141 (41) , 16331-16343. https://doi.org/10.1021/jacs.9b06938
    34. Tao Liu, Shasha Liu, Wenxuan Jiang, Wei Wang. Tracking Sub-Nanometer Shift in the Scattering Centroid of Single Gold Nanorods during Electrochemical Charging. ACS Nano 2019, 13 (6) , 6279-6286. https://doi.org/10.1021/acsnano.8b09636
    35. Alexander Al-Zubeidi, Benjamin S. Hoener, Sean S. E. Collins, Wenxiao Wang, Silke R. Kirchner, Seyyed Ali Hosseini Jebeli, Anneli Joplin, Wei-Shun Chang, Stephan Link, Christy F. Landes. Hot Holes Assist Plasmonic Nanoelectrode Dissolution. Nano Letters 2019, 19 (2) , 1301-1306. https://doi.org/10.1021/acs.nanolett.8b04894
    36. Partha Saha, Joshua W. Hill, Joshua D. Walmsley, Caleb M. Hill. Probing Electrocatalysis at Individual Au Nanorods via Correlated Optical and Electrochemical Measurements. Analytical Chemistry 2018, 90 (21) , 12832-12839. https://doi.org/10.1021/acs.analchem.8b03360
    37. Varsha Thambi, Ashish Kar, Piue Ghosh, Saumyakanti Khatua. Light-Controlled in Situ Bidirectional Tuning and Monitoring of Gold Nanorod Plasmon via Oxidative Etching with FeCl3. The Journal of Physical Chemistry C 2018, 122 (43) , 24885-24890. https://doi.org/10.1021/acs.jpcc.8b06679
    38. Matteo Parente, Sassan Sheikholeslami, Gururaj V. Naik, Jennifer A. Dionne, Andrea Baldi. Equilibration of Photogenerated Charge Carriers in Plasmonic Core@Shell Nanoparticles. The Journal of Physical Chemistry C 2018, 122 (41) , 23631-23638. https://doi.org/10.1021/acs.jpcc.8b05003
    39. Kevin Wonner, Mathies V. Evers, Kristina Tschulik. Simultaneous Opto- and Spectro-Electrochemistry: Reactions of Individual Nanoparticles Uncovered by Dark-Field Microscopy. Journal of the American Chemical Society 2018, 140 (40) , 12658-12661. https://doi.org/10.1021/jacs.8b02367
    40. Feng Zhao, Weimin Yang, Tien-Mo Shih, Shiliang Feng, Yuejiao Zhang, Jianfeng Li, Jiawei Yan, Zhilin Yang. Plasmoelectric Potential Mapping of a Single Nanoparticle. ACS Photonics 2018, 5 (9) , 3519-3525. https://doi.org/10.1021/acsphotonics.8b00763
    41. Benjamin Foerster, Jens Rutten, Hieu Pham, Stephan Link, Carsten Sönnichsen. Particle Plasmons as Dipole Antennas: State Representation of Relative Observables. The Journal of Physical Chemistry C 2018, 122 (33) , 19116-19123. https://doi.org/10.1021/acs.jpcc.8b06350
    42. Yanxiao Ma, Alton L. Highsmith, Caleb M. Hill, Shanlin Pan. Dark-Field Scattering Spectroelectrochemistry Analysis of Hydrazine Oxidation at Au Nanoparticle-Modified Transparent Electrodes. The Journal of Physical Chemistry C 2018, 122 (32) , 18603-18614. https://doi.org/10.1021/acs.jpcc.8b05112
    43. Keisuke Nakamura, Tomoya Oshikiri, Kosei Ueno, Takayoshi Katase, Hiromichi Ohta, Hiroaki Misawa. Plasmon-Assisted Polarity Switching of a Photoelectric Conversion Device by UV and Visible Light Irradiation. The Journal of Physical Chemistry C 2018, 122 (25) , 14064-14071. https://doi.org/10.1021/acs.jpcc.8b01198
    44. Ryo Takahata, Seiji Yamazoe, Kiichirou Koyasu, Kohei Imura, Tatsuya Tsukuda. Gold Ultrathin Nanorods with Controlled Aspect Ratios and Surface Modifications: Formation Mechanism and Localized Surface Plasmon Resonance. Journal of the American Chemical Society 2018, 140 (21) , 6640-6647. https://doi.org/10.1021/jacs.8b02884
    45. Ankit Agrawal, Ilka Kriegel, Evan L. Runnerstrom, Francesco Scotognella, Anna Llordes, Delia J. Milliron. Rationalizing the Impact of Surface Depletion on Electrochemical Modulation of Plasmon Resonance Absorption in Metal Oxide Nanocrystals. ACS Photonics 2018, 5 (5) , 2044-2050. https://doi.org/10.1021/acsphotonics.7b01587
    46. Xiaoge Liu, Ju-Hyung Kang, Hongtao Yuan, Junghyun Park, Yi Cui, Harold Y. Hwang, Mark L. Brongersma. Tuning of Plasmons in Transparent Conductive Oxides by Carrier Accumulation. ACS Photonics 2018, 5 (4) , 1493-1498. https://doi.org/10.1021/acsphotonics.7b01517
    47. Silke R. Kirchner, Kyle W. Smith, Benjamin S. Hoener, Sean S. E. Collins, Wenxiao Wang, Yi-Yu Cai, Calum Kinnear, Heyou Zhang, Wei-Shun Chang, Paul Mulvaney, Christy F. Landes, Stephan Link. Snapshot Hyperspectral Imaging (SHI) for Revealing Irreversible and Heterogeneous Plasmonic Processes. The Journal of Physical Chemistry C 2018, 122 (12) , 6865-6875. https://doi.org/10.1021/acs.jpcc.8b01398
    48. Nina Jiang, Xiaolu Zhuo, Jianfang Wang. Active Plasmonics: Principles, Structures, and Applications. Chemical Reviews 2018, 118 (6) , 3054-3099. https://doi.org/10.1021/acs.chemrev.7b00252
    49. Ankit Agrawal, Shin Hum Cho, Omid Zandi, Sandeep Ghosh, Robert W. Johns, Delia J. Milliron. Localized Surface Plasmon Resonance in Semiconductor Nanocrystals. Chemical Reviews 2018, 118 (6) , 3121-3207. https://doi.org/10.1021/acs.chemrev.7b00613
    50. Jose Navarrete, Chris Siefe, Samuel Alcantar, Michael Belt, Galen D. Stucky, and Martin Moskovits . Merely Measuring the UV–Visible Spectrum of Gold Nanoparticles Can Change Their Charge State. Nano Letters 2018, 18 (2) , 669-674. https://doi.org/10.1021/acs.nanolett.7b02592
    51. Weihui Ou, Yu Zou, Kewei Wang, Wenbin Gong, Renjun Pei, Liwei Chen, Zhenghui Pan, Dongdong Fu, Xin Huang, Yanfei Zhao, Weibang Lu, Jiang Jiang. Active Manipulation of NIR Plasmonics: the Case of Cu2–xSe through Electrochemistry. The Journal of Physical Chemistry Letters 2018, 9 (2) , 274-280. https://doi.org/10.1021/acs.jpclett.7b03305
    52. Elizabeth A. Fisher, Kaylyn K. Leung, Jannu Casanova-Moreno, Tamiko Masuda, Jeff Young, Dan Bizzotto. Quantifying the Selective Modification of Au(111) Facets via Electrochemical and Electroless Treatments for Manipulating Gold Nanorod Surface Composition. Langmuir 2017, 33 (45) , 12887-12896. https://doi.org/10.1021/acs.langmuir.7b03021
    53. Sungju Yu, Andrew J. Wilson, Gayatri Kumari, Xueqiang Zhang, and Prashant K. Jain . Opportunities and Challenges of Solar-Energy-Driven Carbon Dioxide to Fuel Conversion with Plasmonic Catalysts. ACS Energy Letters 2017, 2 (9) , 2058-2070. https://doi.org/10.1021/acsenergylett.7b00640
    54. Pekka Peljo, Micheál D. Scanlon, Astrid J. Olaya, Lucie Rivier, Evgeny Smirnov, and Hubert H. Girault . Redox Electrocatalysis of Floating Nanoparticles: Determining Electrocatalytic Properties without the Influence of Solid Supports. The Journal of Physical Chemistry Letters 2017, 8 (15) , 3564-3575. https://doi.org/10.1021/acs.jpclett.7b00685
    55. Tokuhisa Kawawaki, Heyou Zhang, Hiroyasu Nishi, Paul Mulvaney, and Tetsu Tatsuma . Potential-Scanning Localized Plasmon Sensing with Single and Coupled Gold Nanorods. The Journal of Physical Chemistry Letters 2017, 8 (15) , 3637-3641. https://doi.org/10.1021/acs.jpclett.7b01620
    56. Sirimuvva Tadepalli, Zheyu Wang, Keng-Ku Liu, Qisheng Jiang, Joseph Slocik, Rajesh R. Naik, and Srikanth Singamaneni . Influence of Surface Charge of the Nanostructures on the Biocatalytic Activity. Langmuir 2017, 33 (26) , 6611-6619. https://doi.org/10.1021/acs.langmuir.6b04490
    57. Benjamin S. Hoener, Hui Zhang, Thomas S. Heiderscheit, Silke R. Kirchner, Agampodi S. De Silva Indrasekara, Rashad Baiyasi, Yiyu Cai, Peter Nordlander, Stephan Link, Christy F. Landes, and Wei-Shun Chang . Spectral Response of Plasmonic Gold Nanoparticles to Capacitive Charging: Morphology Effects. The Journal of Physical Chemistry Letters 2017, 8 (12) , 2681-2688. https://doi.org/10.1021/acs.jpclett.7b00945
    58. Gang Lei, Peng Fei Gao, Tong Yang, Jun Zhou, Hong Zhi Zhang, Shan Shan Sun, Ming Xuan Gao, and Cheng Zhi Huang . Photoinduced Electron Transfer Process Visualized on Single Silver Nanoparticles. ACS Nano 2017, 11 (2) , 2085-2093. https://doi.org/10.1021/acsnano.6b08282
    59. Yixian Wang, Xiaonan Shan, Hui Wang, Shaopeng Wang, and Nongjian Tao . Plasmonic Imaging of Surface Electrochemical Reactions of Single Gold Nanowires. Journal of the American Chemical Society 2017, 139 (4) , 1376-1379. https://doi.org/10.1021/jacs.6b10693
    60. Yimin Fang, Hui Wang, Hui Yu, Xianwei Liu, Wei Wang, Hong-Yuan Chen, and N. J. Tao . Plasmonic Imaging of Electrochemical Reactions of Single Nanoparticles. Accounts of Chemical Research 2016, 49 (11) , 2614-2624. https://doi.org/10.1021/acs.accounts.6b00348
    61. Sean S. E. Collins, Xingzhan Wei, Thomas G. McKenzie, Alison M. Funston, and Paul Mulvaney . Single Gold Nanorod Charge Modulation in an Ion Gel Device. Nano Letters 2016, 16 (11) , 6863-6869. https://doi.org/10.1021/acs.nanolett.6b02696
    62. Kyle D. Gilroy, Aleksey Ruditskiy, Hsin-Chieh Peng, Dong Qin, and Younan Xia . Bimetallic Nanocrystals: Syntheses, Properties, and Applications. Chemical Reviews 2016, 116 (18) , 10414-10472. https://doi.org/10.1021/acs.chemrev.6b00211
    63. Benjamin S. Hoener, Chad P. Byers, Thomas S. Heiderscheit, Agampodi S. De Silva Indrasekara, Anneli Hoggard, Wei-Shun Chang, Stephan Link, and Christy F. Landes . Spectroelectrochemistry of Halide Anion Adsorption and Dissolution of Single Gold Nanorods. The Journal of Physical Chemistry C 2016, 120 (37) , 20604-20612. https://doi.org/10.1021/acs.jpcc.6b00650
    64. Andrew J. Wilson, Natalia Y. Molina, and Katherine A. Willets . Modification of the Electrochemical Properties of Nile Blue through Covalent Attachment to Gold As Revealed by Electrochemistry and SERS. The Journal of Physical Chemistry C 2016, 120 (37) , 21091-21098. https://doi.org/10.1021/acs.jpcc.6b03962
    65. Vitor Brasiliense, Pascal Berto, Catherine Combellas, Gilles Tessier, and Frédéric Kanoufi . Electrochemistry of Single Nanodomains Revealed by Three-Dimensional Holographic Microscopy. Accounts of Chemical Research 2016, 49 (9) , 2049-2057. https://doi.org/10.1021/acs.accounts.6b00335
    66. Carola Schopf, Amélie Wahl, Alfonso Martín, Alan O’Riordan, and Daniela Iacopino . Direct Observation of Mercury Amalgamation on Individual Gold Nanorods Using Spectroelectrochemistry. The Journal of Physical Chemistry C 2016, 120 (34) , 19295-19301. https://doi.org/10.1021/acs.jpcc.6b04668
    67. Chad P. Byers, Benjamin S. Hoener, Wei-Shun Chang, Stephan Link, and Christy F. Landes . Single-Particle Plasmon Voltammetry (spPV) for Detecting Anion Adsorption. Nano Letters 2016, 16 (4) , 2314-2321. https://doi.org/10.1021/acs.nanolett.5b04990
    68. Jun-Gang Wang Chao Jing Yi-Tao Long . Single-Nanoparticle Plasmonic Spectroelectrochemistry. 2016, 57-96. https://doi.org/10.1021/bk-2016-1246.ch004
    69. Mahmoud A. Mahmoud . Effective Optoelectrical Switching by Using Pseudo-Single Crystal of Monolayer Array of 2D Polymer–Plasmonic Nanoparticles System. The Journal of Physical Chemistry C 2015, 119 (52) , 29095-29104. https://doi.org/10.1021/acs.jpcc.5b09908
    70. Sean S. E. Collins, Michela Cittadini, Carlos Pecharromán, Alessandro Martucci, and Paul Mulvaney . Hydrogen Spillover between Single Gold Nanorods and Metal Oxide Supports: A Surface Plasmon Spectroscopy Study. ACS Nano 2015, 9 (8) , 7846-7856. https://doi.org/10.1021/acsnano.5b02970
    71. Maggie L. Weber, Andrew J. Wilson, and Katherine A. Willets . Characterizing the Spatial Dependence of Redox Chemistry on Plasmonic Nanoparticle Electrodes Using Correlated Super-Resolution Surface-Enhanced Raman Scattering Imaging and Electron Microscopy. The Journal of Physical Chemistry C 2015, 119 (32) , 18591-18601. https://doi.org/10.1021/acs.jpcc.5b05715
    72. Hiroyasu Nishi, Sayaka Hiroya, and Tetsu Tatsuma . Potential-Scanning Localized Surface Plasmon Resonance Sensor. ACS Nano 2015, 9 (6) , 6214-6221. https://doi.org/10.1021/acsnano.5b01577
    73. Ana M. Brown, Matthew T. Sheldon, and Harry A. Atwater . Electrochemical Tuning of the Dielectric Function of Au Nanoparticles. ACS Photonics 2015, 2 (4) , 459-464. https://doi.org/10.1021/ph500358q
    74. Caleb M. Hill, Robert Bennett, Chen Zhou, Shane Street, Jie Zheng, and Shanlin Pan . Single Ag Nanoparticle Spectroelectrochemistry via Dark-Field Scattering and Fluorescence Microscopies. The Journal of Physical Chemistry C 2015, 119 (12) , 6760-6768. https://doi.org/10.1021/jp511637a
    75. Hyunjoon Song . Metal Hybrid Nanoparticles for Catalytic Organic and Photochemical Transformations. Accounts of Chemical Research 2015, 48 (3) , 491-499. https://doi.org/10.1021/ar500411s
    76. Mariana Chirea, Sean S. E. Collins, Xingzhan Wei, and Paul Mulvaney . Spectroelectrochemistry of Silver Deposition on Single Gold Nanocrystals. The Journal of Physical Chemistry Letters 2014, 5 (24) , 4331-4335. https://doi.org/10.1021/jz502349x
    77. Chad P. Byers, Benjamin S. Hoener, Wei-Shun Chang, Mustafa Yorulmaz, Stephan Link, and Christy F. Landes . Single-Particle Spectroscopy Reveals Heterogeneity in Electrochemical Tuning of the Localized Surface Plasmon. The Journal of Physical Chemistry B 2014, 118 (49) , 14047-14055. https://doi.org/10.1021/jp504454y
    78. Klaus B. Mogensen and Katrin Kneipp . Size-Dependent Shifts of Plasmon Resonance in Silver Nanoparticle Films Using Controlled Dissolution: Monitoring the Onset of Surface Screening Effects. The Journal of Physical Chemistry C 2014, 118 (48) , 28075-28083. https://doi.org/10.1021/jp505632n
    79. Chao Jing, Frankie James Rawson, Hao Zhou, Xin Shi, Wen-Hui Li, Da-Wei Li, and Yi-Tao Long . New Insights into Electrocatalysis Based on Plasmon Resonance for the Real-Time Monitoring of Catalytic Events on Single Gold Nanorods. Analytical Chemistry 2014, 86 (11) , 5513-5518. https://doi.org/10.1021/ac500785u
    80. Gregory Hartland (Senior Editor, The Journal of Physical Chemistry) . Designing Plasmon Resonances. The Journal of Physical Chemistry Letters 2014, 5 (9) , 1583-1584. https://doi.org/10.1021/jz500703x
    81. Aaron L. Routzahn and Prashant K. Jain . Single-Nanocrystal Reaction Trajectories Reveal Sharp Cooperative Transitions. Nano Letters 2014, 14 (2) , 987-992. https://doi.org/10.1021/nl4044289
    82. Jessica Roman-Perez, Cristina Ruano, Silvia P. Centeno, Isabel López-Tocón, Juan F. Arenas, Juan Soto, and Juan C. Otero . Huge Energy Gain in Metal-to-Molecule Charge Transfer Processes: A Combined Effect of an Electrical Capacitive Enhancement in Nanometer-Size Hot Spots and the Electronic Structure of the Surface Complex. The Journal of Physical Chemistry C 2014, 118 (5) , 2718-2725. https://doi.org/10.1021/jp412231w
    83. Anthony S. Stender, Xingzhan Wei, Ashley E. Augspurger, and Ning Fang . Plasmonic Behavior of Single Gold Dumbbells and Simple Dumbbell Geometries. The Journal of Physical Chemistry C 2013, 117 (31) , 16195-16202. https://doi.org/10.1021/jp406064h
    84. Xiaochun Zhou, Eric Choudhary, Nesha May Andoy, Ningmu Zou, and Peng Chen . Scalable Parallel Screening of Catalyst Activity at the Single-Particle Level and Subdiffraction Resolution. ACS Catalysis 2013, 3 (7) , 1448-1453. https://doi.org/10.1021/cs400277a
    85. Limei Tian, Enze Chen, Naveen Gandra, Abdennour Abbas, and Srikanth Singamaneni . Gold Nanorods as Plasmonic Nanotransducers: Distance-Dependent Refractive Index Sensitivity. Langmuir 2012, 28 (50) , 17435-17442. https://doi.org/10.1021/la3034534
    86. Limei Tian, Jeremiah J. Morrissey, Ramesh Kattumenu, Naveen Gandra, Evan D. Kharasch, and Srikanth Singamaneni . Bioplasmonic Paper as a Platform for Detection of Kidney Cancer Biomarkers. Analytical Chemistry 2012, 84 (22) , 9928-9934. https://doi.org/10.1021/ac302332g
    87. Denis Mongin, Ehud Shaviv, Paolo Maioli, Aurélien Crut, Uri Banin, Natalia Del Fatti, and Fabrice Vallée . Ultrafast Photoinduced Charge Separation in Metal–Semiconductor Nanohybrids. ACS Nano 2012, 6 (8) , 7034-7043. https://doi.org/10.1021/nn302089h
    88. Yu Huang, Mark C Pitter, and Michael G Somekh . Time-Dependent Scattering of Ultrathin Gold Film under Potential Perturbation. ACS Applied Materials & Interfaces 2012, 4 (8) , 3829-3836. https://doi.org/10.1021/am301231m
    89. Scott C. Warren, David A. Walker, and Bartosz A. Grzybowski . Plasmoelectronics: Coupling Plasmonic Excitation with Electron Flow. Langmuir 2012, 28 (24) , 9093-9102. https://doi.org/10.1021/la300377j
    90. Chao Jing, Zhen Gu, Yi-Lun Ying, Da-Wei Li, Lei Zhang, and Yi-Tao Long . Chrominance to Dimension: A Real-Time Method for Measuring the Size of Single Gold Nanoparticles. Analytical Chemistry 2012, 84 (10) , 4284-4291. https://doi.org/10.1021/ac203118g
    91. S. K. Dondapati, M. Ludemann, R. Müller, S. Schwieger, A. Schwemer, B. Händel, D. Kwiatkowski, M. Djiango, E. Runge, and T. A. Klar . Voltage-Induced Adsorbate Damping of Single Gold Nanorod Plasmons in Aqueous Solution. Nano Letters 2012, 12 (3) , 1247-1252. https://doi.org/10.1021/nl203673g
    92. Daeha Seo, Garam Park, and Hyunjoon Song . Plasmonic Monitoring of Catalytic Hydrogen Generation by a Single Nanoparticle Probe. Journal of the American Chemical Society 2012, 134 (2) , 1221-1227. https://doi.org/10.1021/ja2093663
    93. Yu Huang, Mark C. Pitter, and Michael G. Somekh . Morphology-Dependent Voltage Sensitivity of a Gold Nanostructure. Langmuir 2011, 27 (22) , 13950-13961. https://doi.org/10.1021/la202983d
    94. Guillermo Garcia, Raffaella Buonsanti, Evan L. Runnerstrom, Rueben J. Mendelsberg, Anna Llordes, Andre Anders, Thomas J. Richardson, and Delia J. Milliron . Dynamically Modulating the Surface Plasmon Resonance of Doped Semiconductor Nanocrystals. Nano Letters 2011, 11 (10) , 4415-4420. https://doi.org/10.1021/nl202597n
    95. Michael B. Cortie and Andrew M. McDonagh . Synthesis and Optical Properties of Hybrid and Alloy Plasmonic Nanoparticles. Chemical Reviews 2011, 111 (6) , 3713-3735. https://doi.org/10.1021/cr1002529
    96. Takumi Sannomiya, Harald Dermutz, Christian Hafner, Janos Vörös and Andreas B. Dahlin . Electrochemistry on a Localized Surface Plasmon Resonance Sensor. Langmuir 2010, 26 (10) , 7619-7626. https://doi.org/10.1021/la9042342
    97. Mohsen Elabbadi, Christina Boukouvala, Emilie Ringe. Controllable synthesis of Pd and Pt shells on Au nanoparticles with electrodeposition. Scientific Reports 2025, 15 (1) https://doi.org/10.1038/s41598-024-84476-z
    98. Takahiro Hayashi, Tomohiro Fukushima, Kei Murakoshi. Role of cavity strong coupling on single electron transfer reaction rate at electrode–electrolyte interface. The Journal of Chemical Physics 2024, 161 (18) https://doi.org/10.1063/5.0231477
    99. Qian-Qian Tao, Cong-Hui Xu, Wei Zhao, Hong-Yuan Chen, Jing-Juan Xu. Nanostructure impact on electrocatalysis in gold nanodimers via electrochemiluminescence microscopy. Chemical Communications 2024, 60 (76) , 10556-10559. https://doi.org/10.1039/D4CC03443K
    100. Luka Zurak, Christian Wolff, Jessica Meier, René Kullock, N. Asger Mortensen, Bert Hecht, Thorsten Feichtner. Modulation of surface response in a single plasmonic nanoresonator. Science Advances 2024, 10 (36) https://doi.org/10.1126/sciadv.adn5227
    Load more citations

    Journal of the American Chemical Society

    Cite this: J. Am. Chem. Soc. 2009, 131, 41, 14664–14666
    Click to copy citationCitation copied!
    https://doi.org/10.1021/ja905216h
    Published September 25, 2009
    Copyright © 2009 American Chemical Society

    Article Views

    6700

    Altmetric

    -

    Citations

    Learn about these metrics

    Article Views are the COUNTER-compliant sum of full text article downloads since November 2008 (both PDF and HTML) across all institutions and individuals. These metrics are regularly updated to reflect usage leading up to the last few days.

    Citations are the number of other articles citing this article, calculated by Crossref and updated daily. Find more information about Crossref citation counts.

    The Altmetric Attention Score is a quantitative measure of the attention that a research article has received online. Clicking on the donut icon will load a page at altmetric.com with additional details about the score and the social media presence for the given article. Find more information on the Altmetric Attention Score and how the score is calculated.