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均苯四甲酸氢键盐中的晶体结构、振动频率和极化率分布

Crystal structure, vibrational frequencies and polarizability distribution in hydrogen-bonded salts of pyromellitic acid.

作者信息

Dos Santos Leonardo H R, Krawczuk Anna, Franco Chris H J, Diniz Renata

机构信息

Departamento de Química, Universidade Federal de Minas Gerais, Av. Antônio Carlos 6627, Belo Horizonte, MG 31270-901, Brazil.

Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, Krakow, 30-387, Poland.

出版信息

Acta Crystallogr B Struct Sci Cryst Eng Mater. 2020 Apr 1;76(Pt 2):144-156. doi: 10.1107/S2052520620001067. Epub 2020 Mar 4.

Abstract

Structural features of moderate-to-strong O-H...O hydrogen bonds are related to the frequencies of O-H stretching vibrations and to the electric polarizability distribution in the donor and acceptor functional groups for crystals synthesized from the 1,2,4,5-benzenetetracarboxylic (pyromellitic) acid, namely: bis(3-aminopyridinium) dihydrogen pyromellitate tetrahydrate, (1); bis(3-carboxypyridinium) dihydrogen pyromellitate, (2); bis(3-carboxyphenylammonium) dihydrogen pyromellitate dihydrate, (3); and bis(4-carboxyphenylammonium) dihydrogen pyromellitate, (4). A combination of single-crystal X-ray diffraction, powder Raman spectroscopy and first-principle calculations in both crystalline and gaseous phases has shown that changes in the O-H...O hydrogen-bond geometry can be followed by changes in the corresponding spectral modes. Vibrational properties of moderate hydrogen bonds can be estimated from correlations based on statistical analysis of several compounds [Novak (1974). Struct. Bond. 18, 177-216]. However, frequencies related to very short O-H...O bonds can only be predicted by relationships built from a subset of structurally similar systems. Moreover, the way in which hydrogen bonds affect the polarizability of donor and acceptor groups depends on their strength. Moderate interactions enhance the polarizability and make it more anisotropic. Shorter hydrogen bonds may decrease the polarizability of a group as a consequence of the volume restraint implied by the neighbour molecule within a hydrogen-bonded aggregate. This is significant for evaluation of the electric susceptibility in crystals and, therefore, for estimation of refractive indices and birefringence.

摘要

中强O-H...O氢键的结构特征与O-H伸缩振动频率以及由1,2,4,5-苯四甲酸(均苯四甲酸)合成的晶体中供体和受体官能团的电极化率分布有关,这些晶体分别为:四水合双(3-氨基吡啶鎓)均苯四甲酸二氢盐,(1);双(3-羧基吡啶鎓)均苯四甲酸二氢盐,(2);二水合双(3-羧基苯基铵)均苯四甲酸二氢盐,(3);以及双(4-羧基苯基铵)均苯四甲酸二氢盐,(4)。单晶X射线衍射、粉末拉曼光谱以及在晶相和气态下的第一性原理计算相结合表明,O-H...O氢键几何结构的变化可以通过相应光谱模式的变化来追踪。中等强度氢键的振动性质可以根据对几种化合物的统计分析建立的相关性来估计[诺瓦克(1974年)。《结构与键合》18卷,177 - 216页]。然而,与非常短的O-H...O键相关的频率只能通过由结构相似体系的一个子集建立的关系来预测。此外,氢键影响供体和受体基团极化率的方式取决于其强度。中等强度的相互作用增强极化率并使其更具各向异性。较短的氢键可能由于氢键聚集体中相邻分子所暗示的体积限制而降低基团的极化率。这对于评估晶体中的电导率很重要,因此对于估计折射率和双折射也很重要。

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