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SOLVATION OF SCN- AND SECN- ANIONS IN HYDROGEN-BONDING SOLVENTS

机译:氢键溶剂中SCN和SECN阴离子的溶解

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The primary solvation sphere surrounding the thiocyanate or the selenocyanide anion in protic solvents, such as methanol, N-methylformamide and formamide, forms intimate hydrogen bonds with these anions. These interactions perturb the electron density and vibrational modes of these anions and can therefore be studied by NMR and infrared spectroscopies. In neat solutions, these solvents form hydrogen bonds to the nitrogen end along the molecular axis and nonaxially to the pi cloud of the C-N bond, although a substantial proportion of the anions is not hydrogen bonded. In nitromethane solutions, the thiocyanate and selenocyanide anions form weak complexes with methanol and the amide solvents (K < 1 M(-1)), which is an order of magnitude smaller than that of OCN- with the same solvents, determined in our previous investigation of the cyanate anion. The remarkable differences in the solvation of these singly charged anions can be understood by theoretical calculations of their electrostatic potentials.
机译:在质子传递溶剂(例如甲醇,N-甲基甲酰胺和甲酰胺)中,围绕硫氰酸盐或硒氰化物阴离子的一级溶剂化球与这些阴离子形成紧密的氢键。这些相互作用扰乱了这些阴离子的电子密度和振动模式,因此可以通过NMR和红外光谱研究。在纯溶液中,尽管大部分阴离子不是氢键,但这些溶剂在分子轴的氮端形成氢键,在C-N键的pi云非轴向形成氢键。在硝基甲烷溶液中,硫氰酸盐和硒氰化物阴离子与甲醇和酰胺溶剂(K <1 M(-1))形成弱络合物,比我们以前确定的相同溶剂的OCN-小一个数量级。氰酸根阴离子的研究。这些单电荷阴离子的溶剂化显着差异可以通过其静电势的理论计算来理解。

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