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Exploiting directional long range secondary forces for regulating electrostatics-dominated noncovalent interactions

机译:利用定向远距离次级力调节静电为主的非共价相互作用

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It has been well established that long range secondary electrostatic interactions (SEIs) have a significant effect on the stability of supramolecular complexes. However, general rules for exploiting SEIs in the rational design of diverse supramolecular complexes have been difficult to obtain. In this work, we outline a quantum chemical approach for understanding the strength of electrostatic interactions. This approach is seen to provide excellent correlation between the electrostatic force and the binding energy between two partners in hydrogen-bonded complexes, as well as that between two ions in ion-pair complexes. Furthermore, we illustrate how the understanding of the binding allows for the rational design of new complexes where the association constant between the two partners can be increased or decreased, as desired, by several orders of magnitude. Hence, the current work showcases a general, simple and powerful method of understanding and exploiting long range secondary electrostatic interactions.
机译:公认的是,远距离次级静电相互作用(SEI)对超分子复合物的稳定性具有重大影响。然而,在各种超分子复合物的合理设计中,难以获得利用SEI的一般规则。在这项工作中,我们概述了用于理解静电相互作用强度的量子化学方法。可以看出这种方法在静电力与氢键配合物中两个配偶体之间以及离子对配合物中两个离子之间的结合能之间提供了极好的相关性。此外,我们说明了对结合的理解如何合理地设计新的复合物,其中可以根据需要将两个伙伴之间的缔合常数增加或减少几个数量级。因此,当前的工作展示了一种理解,利用远距离次级静电相互作用的通用,简单而强大的方法。

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