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Marcus Theory of Ion-Pairing

机译:马库斯离子配对理论

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摘要

We present a theory for ion pair dissociation and association, motivated by the concepts of Marcus theory of electron transfer. Despite the extensive research on ion pairing in many chemical and biological processes, much can be learned from the exploration of collective reaction coordinates. To this end, we explore two reaction coordinates, ion pair distance and coordination number. The study of the correlation between these reaction coordinates provides a new insight into the mechanism and kinetics of ion pair dissociation and association in water. The potential of mean force on these different monovalent ion pairs reveal a Marcus-like mechanism coordination state prior to ion pair dissociation or association, water rearrangement. Like Marcus theory, we find the existence increasing exergonicity. This study provides a new perspective 2D surfaces computed from molecular dynamics simulations of for ion-pairing: Water molecules rearrange forming an activated followed by relaxation of the coordination state due to further of an inverted region where the transition rates are slower with for the future investigations of ion-pairing and transport.
机译:根据马库斯电子转移理论的概念,我们提出了一种离子对解离和缔合的理论。尽管在许多化学和生物过程中对离子配对进行了广泛的研究,但从集体反应坐标的探索中可以学到很多东西。为此,我们探索了两个反应坐标,离子对距离和配位数。对这些反应坐标之间的相关性的研究为水中离子对解离和缔合的机理和动力学提供了新的见解。这些不同单价离子对上的平均力势揭示了在离子对解离或缔合、水重排之前的类似马库斯机制的配位状态。就像马库斯理论一样,我们发现这种存在的有效性在增加。这项研究为离子配对的分子动力学模拟提供了一个新的视角:水分子重新排列,形成一个激活的配位态,然后由于一个反转区域的进一步扩展,配位态的弛豫,该区域的过渡速率较慢,为离子配对和输运的未来研究提供了一个新的视角。

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