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张庆丰
2023-05-13 20:20
  • 张庆丰
  • 张庆丰 - 教授 博导-武汉大学-化学与分子科学学院-个人资料

近期热点

资料介绍

个人简历


2020.12 至今 武汉大学化学与分子科学学院 教授\r
2017.05-2020.10 美国莱斯大学化学系 博士后 合作导师:Prof. Stephan Link, Prof. Christy Landes\r
2012.09-2017.05 美国南卡罗莱纳大学 理学博士 导师:Prof. Hui Wang\r
2009.09-2012.07 厦门大学 理学硕士 导师:江智渊 教授, 谢兆雄 教授, 郑兰荪 院士\r
2005.09-2009.07 福州大学 理学学士 导师:刘平 教授

研究领域


"""""本课题组主要从事单颗粒光谱与光学显微成像的基础与应用研究"

近期论文


Qingfeng Zhang, Taylor Hernandez, Kyle W. Smith, Seyyed Ali Hosseini Jebeli, Alan X. Dai, Lauren Warning, Rashad Baiyasi, Lauren A. McCarthy, Hua Guo, Dong-Hua Chen, Jennifer A. Dionne, Christy F. Landes*, and Stephan Link*, “Unraveling the Origin of Chirality from Plasmonic Nanoparticle-Protein Complexes”, Science, 2019, 365, 1475-1478.\r
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J. Jesús Velázquez-Salazar#, Lourdes Bazán-Díaz#, Qingfeng Zhang#(co-first author), Rubén Mendoza-Cruz#, Luis Montaño-Priede, Grégory Guisbiers, Nicolas Large, Stephan Link*, and Miguel José-Yacamán*, “Seed-Mediated Controlled Overgrowth of Five-Fold Concave Branched Nanostructures and Their Single-Particle Scattering Properties”, ACS Nano, 2019, 13, 10013-10028.\r
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Qingfeng Zhang, Yadong Zhou, Xiaoqi Fu, Esteban Villarreal, Lichao Sun, Shengli Zou, and Hui Wang*, “Photothermal Effect, Local-Field Dependence, and Charge Carrier-Relaying Species in Plasmon-Driven Photocatalysis: A Case Study of Aerobic Nitrothiophenol Coupling Reaction”, J. Phys. Chem. C, 2019, 123, 26695-26704.\r
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Qingfeng Zhang, and Hui Wang*, “Mechanistic Insights on Plasmon-Driven Photocatalytic Oxidative Coupling of Thiophenol Derivatives: Evidence for Steady-State Photoactivated Oxygen”, J. Phys. Chem. C, 2018, 122, 5686-5697.\r
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Lichao Sun#, Qingfeng Zhang#(co-first author), Guangfang Li, Esteban Villarreal, Xiao-Qi Fu, and Hui Wang*, “Multifaceted Gold-Palladium Alloy Nanorods and Their Geometric, Compositional, and Catalytic Tunabilities”, ACS Nano, 2017, 11, 3213-3228.\r
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Qingfeng Zhang, Lili Han, Hao Jing, Douglas A. Blom, Ye Lin, Huolin L. Xin, and Hui Wang*, “Facet Control of Gold Nanorods”, ACS Nano, 2016, 10, 2960-2974.\r
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Qingfeng Zhang, Hao Jing, Guangfang Li, Ye Lin, Douglas A. Blom, and Hui Wang*, “Intertwining Roles of Silver Ions, Surfactants, and Reducing Agents in Gold Nanorod Overgrowth: Pathway Switch between Silver Underpotential Deposition and Gold-Silver Codeposition”, Chem. Mater., 2016, 28, 2728-2741.\r
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Qingfeng Zhang, Yadong Zhou, Esteban Villarreal, Ye Lin, Shengli Zou, and Hui Wang*, “Faceted Gold Nanorods: Nanocuboids, Convex Nanocuboids, and Concave Nanocuboids”, Nano Lett., 2015, 15, 4161-4169.\r
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Qingfeng Zhang, and Hui Wang*, “Facet-Dependent Catalytic Activities of Au Nanoparticles Enclosed by High-Index Facets”, ACS Catal., 2014, 4, 4027-4033.\r
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Qingfeng Zhang, Nicolas Large, Peter Nordlander, and Hui Wang*, “Porous Au Nanoparticles with Tunable Plasmon Resonances and Intense Field Enhancements for Single-Particle SERS”, J. Phys. Chem. Lett., 2014, 5, 370-374.\r
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Qingfeng Zhang, Douglas, A. Blom, and Hui Wang*, “Nanoporosity-Enhanced Catalysis on Subwavelength Au Nanoparticles: a Plasmon-Enhanced Spectroscopic Study”, Chem. Mater., 2014, 26, 5131-5142.\r
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Qingfeng Zhang, Nicolas Large, and Hui Wang*, “Gold Nanoparticles with Tipped Surface Structures as Substrates for Single-Particle Surface-Enhanced Raman Spectroscopy: Concave Nanocubes, Nanotrisoctahedra, and Nanostars”, ACS Appl. Mater. Interfaces, 2014, 6, 17255-17267.\r
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Lauren Warning, Qingfeng Zhang, Rashad Baiyasi, Christy F. Landes*, and Stephan Link*, “Nanoscale Surface-Induced Unfolding of Single Fibronectin Is Restricted by Serum Albumin Crowding”, J. Phys. Chem. Lett., 2020, 11, 1170-1177.\r
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Rashad Baiyasi, Seyyed Ali Hosseini Jebeli, Qingfeng Zhang, Liang Su, Johan Hofkens, Hiroshi Uji-i, Stephan Link, and Christy F. Landes*, “PSF Distortion in Dye-Plasmonic Nanomaterial Interactions: Friend or Foe?”, ACS Photonics, 2019, 6, 699-708.\r
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Tingting Zheng, Qingfeng Zhang, Sheng Feng, Jun-Jie Zhu*, Qian Wang, and Hui Wang*, “Robust Nonenzymatic Hybrid Nanoelectrocatalysts for Signal Amplification toward Ultrasensitive Electrochemical Cytosensing”, J. Am. Chem. Soc., 2014, 136, 2288-2291.

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