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Anion Binding by Electron-Deficient Arenes Based on Complementary Geometry and Charge Distribution

机译:基于互补几何和电荷分布的缺电子芳烃与阴离子的结合

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摘要

Extended electron-deficient arenes are investigated as potential neutral receptors for polyanions. Anion binds via σ interaction with extended arenes, which are composed solely of C and N ring atoms and CN substituents. As a result, the positive charge on the aromatic C is enhanced, consequently maximizing binding strength. Selectivity is achieved because different charge distributions can be obtained for target anions of a particular geometry. The halides F~- and Cl~- form the most stable complex with 6, while the linear N_3~- interacts most favorably with 7. The trigonal NO_3~- and tetrahedral ClO_4~- fit the 3-fold rotational axis of 6 but do not form stable complexes with 5 and 7. The Y-shaped HCOO~- forms complexes with 4, 5, and 7, with the latter being the most stable. Thus, the anion complexes exhibit strong binding and the best geometrical fit between guest and host, reminiscent of Lego blocks.
机译:研究了扩展的电子不足的芳烃作为聚阴离子的潜在中性受体。阴离子通过σ相互作用与扩展的芳烃结合,芳烃仅由C和N环原子以及CN取代基组成。结果,芳族C上的正电荷增加,因此使结合强度最大化。之所以能够实现选择性,是因为可以为特定几何形状的目标阴离子获得不同的电荷分布。卤化物F〜-和Cl〜-与6形成最稳定的络合物,而线性N_3〜-与7形成最有利的相互作用。三角形NO_3〜-和四面体ClO_4〜-拟合6的3倍旋转轴,但是不会与5和7形成稳定的配合物。Y形HCOO-与4、5和7形成配合物,后者是最稳定的。因此,阴离子络合物在客体和主体之间表现出强大的结合力和最佳的几何拟合,让人联想到乐高积木。

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