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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >On the Marcus model of electron transfer at immiscible liquid interfaces and its application to the semiconductor/liquid interface
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On the Marcus model of electron transfer at immiscible liquid interfaces and its application to the semiconductor/liquid interface

机译:不相溶液体界面电子转移的马库斯模型及其在半导体/液体界面的应用

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摘要

We report calculations for electron transfer rates at immiscible liquid interfaces with new models closely related to a model originally developed by R.A. Marcus. We compare our modified models both with the original Marcus model and with an adaptation of it by N.S. Lewis to electron transfer at the semiconductor-liquid interface. On the basis of these comparisons and a thorough examination of the foundations of both the Marcus and Lewis models, we find no basis for the assertion in the literature that the Lewis model can be used to calculate an upper limit for the electron transfer rate constant at the semiconductor-liquid interface. Features we discuss of the Lewis model and a related model by H. Gerischer show that these semiconductor-liquid interface ET models are evidently not physically plausible. We also conclude that while the Marcus model appears to be a physically plausible first order model for immiscible liquid systems, in its present form it does not seem that it can produce reliable quantitative estimates for real liquid-liquid systems. Our enhancement, both suggested and implemented here, of the Marcus model appear to offer the potential for constructing augmented and better defined models for immiscible liquid ET.
机译:我们报告了与不兼容液体界面的电子传输速率的计算结果,这些新模型与R.A最初开发的模型密切相关。马库斯。我们将修改后的模型与原始Marcus模型以及N.S.路易斯使电子在半导体-液体界面处转移。基于这些比较以及对马库斯模型和刘易斯模型的基础的透彻检验,我们没有发现文献中有证据表明刘易斯模型可用于计算电子传递速率常数的上限。半导体-液体界面。我们讨论的Lewis模型和H. Gerischer的相关模型的特征表明,这些半导体-液体界面ET模型显然在物理上不合理。我们还得出结论,尽管Marcus模型对于不混溶的液体系统似乎是物理上合理的一阶模型,但以目前的形式,它似乎无法为真实的液体-液体系统提供可靠的定量估计。我们在此处建议和实施的对Marcus模型的增强,似乎为构建不混溶液体ET的增强的和定义更好的模型提供了潜力。

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