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首页> 外文期刊>Bulletin of the Chemical Society of Japan >Picosecond Energy Transfer at Gold/Electrolyte Interfaces Using Transient Reflecting Grating Method under Surface Plasmon Resonance Condition
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Picosecond Energy Transfer at Gold/Electrolyte Interfaces Using Transient Reflecting Grating Method under Surface Plasmon Resonance Condition

机译:表面等离子体共振条件下瞬态反射光栅法在金/电解质界面的皮秒能量转移

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摘要

The energy transfer dynamics at gold/NaCl aq (0-0.5 M) interfaces was investigated using our recently developed surface plasmon resonance transient reflecting grating (SPR-TRG) method. We focused on two exponential decays in the SPR-TRG signals. The two decays correspond to the relaxation of hot electrons and interfacial heat transfer, respectively. The intensity of each decay changes systematically with increases in the concentration of NaCl, i.e., the former becomes smaller and the latter becomes larger. Considering the relation between the intensity and the dynamics, we concluded that there is some interaction between the hot electrons and the adsorbate on the interface and that the following temperature rise in gold after relaxation of the hot electrons becomes large. This conclusion shows that an ultrafast energy transfer processes by hot electrons exists, and that the process is hindered by the adsorbate. Finally, we discuss the ultrafast energy transfer in relation to the hot electrons and adsorbate on a molecular scale.
机译:使用我们最近开发的表面等离子体激元共振瞬态反射光栅(SPR-TRG)方法研究了金/ NaCl水溶液(0-0.5 M)界面上的能量转移动力学。我们专注于SPR-TRG信号中的两个指数衰减。这两个衰减分别对应于热电子的弛豫和界面传热。每次衰变的强度随NaCl浓度的增加而系统地变化,即前者变小而后者变大。考虑到强度与动力学之间的关系,我们得出结论,热电子与界面上的被吸附物之间存在一些相互作用,并且在热电子弛豫之后,随后的金的温度升高变大。该结论表明存在由热电子进行的超快速能量转移过程,并且该过程受吸附物的阻碍。最后,我们讨论了与热电子和分子尺度上被吸附物有关的超快能量转移。

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