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首页> 外文期刊>Nature Communications >Higher activation barriers can lift exothermic rate restrictions in electron transfer and enable faster reactions
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Higher activation barriers can lift exothermic rate restrictions in electron transfer and enable faster reactions

机译:更高的活化能垒可以解除电子传输中放热速率的限制,并使反应更快

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Electron transfer reactions are arguably the simplest chemical reactions but they have not yet ceased to intrigue chemists. Charge-separation and charge-recombination reactions are at the core of life-sustaining processes, molecular electronics and solar cells. Intramolecular electron donor-acceptor systems capture the essential features of these reactions and enable their fundamental understanding. Here, we report intramolecular electron transfers covering a range of 100 kcal mol?1 in exothermicities that show an increase, then a decrease, and finally an increase in rates with the driving force of the reactions. Concomitantly, apparent activation energies change from positive, to negative and finally to positive. Reactions with positive activation energies are found to be faster than analogous reactions with negative effective activation energies. The increase of the reorganization energy with the driving force of the reactions can explain the peculiar free-energy relationship observed in this work.
机译:电子转移反应可以说是最简单的化学反应,但尚未引起化学家的兴趣。电荷分离和电荷重组反应是维持生命的过程,分子电子学和太阳能电池的核心。分子内电子供体-受体系统捕获了这些反应的基本特征,并使它们具有基本的认识。在这里,我们报道了分子内电子的转移以放热反应覆盖了100 kcal mol?1的范围,随着反应的驱动力,分子内的电子转移呈现先增加后减少的速率,最后增加。同时,表观活化能从正变到负,最后变为正。发现具有正活化能的反应比具有负有效活化能的类似反应快。重组能随反应驱动力的增加可以解释在这项工作中观察到的独特的自由能关系。

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