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中心对称环境中的不对称氢键。III. 二氯代马来酸氢钾中极短氢键势能面的量子力学计算。

Asymmetric hydrogen bonds in a centrosymmetric environment. III. Quantum mechanical calculations of the potential-energy surfaces for the very short hydrogen bonds in potassium hydrogen dichloromaleate.

作者信息

Majerz I, Olovsson I

机构信息

Materials Chemistry, Angström Laboratory, University of Uppsala, Box 538, SE-751 21 Uppsala, Sweden.

出版信息

Acta Crystallogr B. 2007 Oct;63(Pt 5):748-52. doi: 10.1107/S0108768107041225. Epub 2007 Sep 14.

DOI:10.1107/S0108768107041225
PMID:17873444
Abstract

In the crystal structure of potassium hydrogen dichloromaleate there are two short hydrogen bonds of 2.44 A. The 'heavy-atom' structure is centrosymmetric (space group P1) with centers of symmetry in the middle of the O-O bonds, suggesting centered hydrogen bonds. However, earlier unconventional types of refinements of the extensive neutron data taken at 30, 90, 135, 170 and 295 K demonstrated that the H atoms are actually non-centered in the hydrogen bonds, although the environment is centrosymmetric. Traditionally it has been assumed that the hydrogen distribution adopts the same symmetry as the environment. Reviewing these unusual results it was considered of great interest to verify that the non-centered locations of the H atoms are reasonable from an energy point of view. Quantum mechanical calculations have now been carried out for the potential-energy surfaces (PES) for both the centered and non-centered locations of the H atoms. In all cases the non-centered positions are closer to the energy minima in the PES than the centered positions, and this result confirms that the structure is best described with non-centered H atoms. There is virtually perfect agreement between the quantum-mechanically derived reaction coordinates (QMRC) and the bond-order reaction coordinates (BORC) derived using Pauling's bond-order concept together with the principle of conservation of bond order. [Part I: Olovsson et al. (2001). Acta Cryst. B57, 311-316; Part II: Olovsson et al. (2002). Acta Cryst. B58, 627-631.].

摘要

在二氯马来酸氢钾的晶体结构中,存在两个长度为2.44埃的短氢键。“重原子”结构是中心对称的(空间群P1),对称中心位于O - O键的中间,这表明存在中心氢键。然而,早期对在30、90、135、170和295 K下获取的大量中子数据进行的非常规类型的精修表明,尽管环境是中心对称的,但H原子在氢键中实际上并非处于中心位置。传统上一直认为氢的分布与环境具有相同的对称性。回顾这些异常结果后,从能量角度验证H原子的非中心位置是否合理被认为非常有趣。现在已经对H原子处于中心位置和非中心位置的势能面(PES)进行了量子力学计算。在所有情况下,非中心位置比中心位置更接近PES中的能量最小值,这一结果证实该结构用非中心H原子来描述最为合适。量子力学推导的反应坐标(QMRC)与使用鲍林键级概念以及键级守恒原理推导的键级反应坐标(BORC)之间几乎完全一致。[第一部分:奥洛夫松等人(2001年)。《晶体学报》B57,311 - 316;第二部分:奥洛夫松等人(2002年)。《晶体学报》B58,627 - 631。]

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