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Plasmonic Hot Electron-Mediated Hydrodehalogenation Kinetics on Nanostructured Ag Electrodes

机译:纳米结构AG电极上的等离子体热电子介导的水电钠动力学

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摘要

An attractive field of plasmon-mediated chemical reactions (PMCRs) is developing rapidly, but there is still incomplete understanding of how to control the kinetics of such a reaction related to hot carriers. Here, we chose 8-bromoadenine (8BrAd) as a probe molecule of hot electrons to investigate the influence of the electrode potential, laser wavelength, and power on the PMCR kinetics on silver nanoparticle-modified silver electrodes. Plasmonic hot electron-mediated cleavage of the C-Br bond in 8BrAd has been investigated by combining in situ electrochemical surface-enhanced Raman spectroscopy and density functional theory calculations. The experimental and theoretical results reveal that the energy position of plasmon relaxation-generated hot electrons can be modulated conveniently by applied potentials and laser light. This allows the proposal of a mechanism of modulating the matching energy of the hot electron of plasmon relaxation to promote the efficiency of PMCRs in electrochemical interfaces. Our work will be helpful to design surface plasmon resonance photoelectrochemical reactions on metal electrode surfaces of nanostructures with higher efficiency.
机译:具有较快的等离子体介导的化学反应(PMCR)的有吸引力的领域正在迅速发展,但仍然对如何控制与热载体相关的这种反应的动力学不完全了解。在这里,我们选择了8-溴化宁(8BRAD)作为热电子的探针分子,以研究电极电位,激光波长和功率对PMCR动力学对银纳米颗粒改性银电极的影响。通过与原位电化学表面增强的拉曼光谱和密度泛函理论计算相结合,研究了8BRAD中的C-Br键合的等离子体热电子介导的裂解。实验和理论结果表明,通过施加的电位和激光可以方便地调制等离子体弛豫的热电子的能量位置。这允许提出调制等离子体弛豫热电子的匹配能量来促进电化学界面中PMCRS的效率。我们的工作将有助于设计纳米结构的表面等离子体共振光电化学反应,效率更高。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第41期|17489-17498|共10页
  • 作者单位

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

    State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Collaborative Innovation Center of Chemistry for Energy Materials (iChEM) Xiamen University Xiamen 361005 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 22:16:51

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