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有机离子化合物中的氨基酸阴离子。选定离子对的从头算研究。

Amino acid anions in organic ionic compounds. An ab initio study of selected ion pairs.

作者信息

Benedetto A, Bodo E, Gontrani L, Ballone P, Caminiti R

机构信息

School of Physics, University College Dublin , Dublin 4, Ireland.

出版信息

J Phys Chem B. 2014 Mar 6;118(9):2471-86. doi: 10.1021/jp412281n. Epub 2014 Feb 19.

Abstract

The combination of amino acids in their deprotonated and thus anionic form with a choline cation gives origin to a new and potentially important class of organic ionic compounds. A series of such neutral ion pairs has been investigated by first principle methods. The results reveal intriguing structural motives as well as regular patterns in the charge distribution and predict a number of vibrational and optical properties that could guide the experimental investigation of these compounds. The replacement of choline with its phosphocholine analogue causes the spontaneous reciprocal neutralization of cations and anions, taking place through the transfer of a proton between the two ions. Systems of this kind, therefore, provide a wide and easily accessible playground to probe the ionic/polar transition in organic systems, while the easy transfer of H(+) among neutral and ionic species points to their potential application as proton conductors. The analysis of the ab initio data highlights similarities as well as discrepancies from the rigid-ions force-field picture and suggests directions for the improvement of empirical models.

摘要

去质子化因而呈阴离子形式的氨基酸与胆碱阳离子相结合,产生了一类新的、可能具有重要意义的有机离子化合物。已通过第一性原理方法对一系列此类中性离子对进行了研究。结果揭示了有趣的结构模式以及电荷分布的规律,并预测了一些振动和光学性质,这些性质可指导对这些化合物的实验研究。用其磷酸胆碱类似物取代胆碱会导致阳离子和阴离子通过两个离子之间质子的转移而自发地相互中和。因此,这类体系为探究有机体系中的离子/极性转变提供了一个广阔且易于进入的平台,而H⁺在中性和离子物种之间的容易转移表明了它们作为质子导体的潜在应用。对从头算数据的分析突出了与刚性离子力场图景的异同,并为改进经验模型指明了方向。

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