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首页> 外文期刊>The Journal of Chemical Physics >The influence of the 'cage effect' on the mechanism of reversible bimolecular multistage chemical reactions in solutions
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The influence of the 'cage effect' on the mechanism of reversible bimolecular multistage chemical reactions in solutions

机译:“笼效应”对溶液中可逆双分子多级化学反应机理的影响

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摘要

Manifestations of the "cage effect" at the encounters of reactants are theoretically treated by the example of multistage reactions in liquid solutions including bimolecular exchange reactions as elementary stages. It is shown that consistent consideration of quasi-stationary kinetics of multistage reactions (possible only in the framework of the encounter theory) for reactions proceeding near reactants contact can be made on the basis of the concepts of a "cage complex." Though mathematically such a consideration is more complicated, it is more clear from the standpoint of chemical notions. It is established that the presence of the "cage effect" leads to some important effects not inherent in reactions in gases or those in solutions proceeding in the kinetic regime, such as the appearance of new transition channels of reactant transformation that cannot be caused by elementary event of chemical conversion for the given mechanism of reaction. This results in that, for example, rate constant values of multistage reaction defined by standard kinetic equations of formal chemical kinetics from experimentally measured kinetics can differ essentially from real values of these constants. (C) 2015 AIP Publishing LLC.
机译:理论上通过在液体溶液中的多阶段反应的例子来处理在反应物相遇时“笼效应”的表现,所述溶液包括双分子交换反应作为基本阶段。结果表明,可以在“笼络合物”的概念的基础上一致地考虑多阶段反应的准平稳动力学(仅在相遇理论的框架内),以进行接近反应物接触的反应。尽管从数学上来说,这种考虑更为复杂,但是从化学概念的角度来看,这一点更加清晰。可以确定的是,“笼效应”的存在会导致一些重要的效应,这些效应不是气体反应或动力学过程中的溶液反应所固有的,例如新的反应物转化通道的出现,这不能由元素引起。给定反应机理的化学转化事件。这导致,例如,由形式化学动力学的标准动力学方程式定义的多阶段反应速率常数值与实验测得的动力学值可以实质上不同于这些常数的实际值。 (C)2015 AIP Publishing LLC。

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