首页> 外文期刊>Journal of Molecular Structure >Structural investigations of the ferroelectric glycinium hydrogenphosphite (GPI) and its deuterated analogue (DGPI) I. X-ray diffraction studies of the crystal structure of paraelectric and ferroelectric phases
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Structural investigations of the ferroelectric glycinium hydrogenphosphite (GPI) and its deuterated analogue (DGPI) I. X-ray diffraction studies of the crystal structure of paraelectric and ferroelectric phases

机译:铁电亚磷酸氢亚铁盐(GPI)及其氘代类似物(DGPI)的结构研究I.顺电和铁电相晶体结构的X射线衍射研究

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摘要

The crystal structures of the glycinium hydrogenphosphite (GPI) and its deuterated analogue (DGPI) were determined by the X-ray diffraction method in the paraelectric (T = 295(2) and 360(2) K) and ferroelectric (T = 180(2) and 295(2) K) phases. The crystal structures of the paraelectric phase are consistent with the data published by Averbuch-Pouchot [Acta Cryst. C49 (1993) 815]. In the deuterated crystal, the interphosphite hydrogen bonds are longer (by ca. 0.03 Angstrom) than those in the normal crystal. In the ferroelectric phase crystals remain monoclinic with space group P2(1). Due to symmetry lowering, two kinds of glycinium cations (GA and GB) and two kinds of hydrogenphosphite anions (PA and PB) appear in the ferroelectric phase. The protons in the interphosphite hydrogen bonds are ordered. The P-H distances in PA (1.314(10) Angstrom) and PB (1.222(9) Angstrom) hydrogenphosphite anions differ significantly for GPI. Their P-D analogues (1.310(10) and 1.279(9) Angstrom) in the DGPI crystal are slightly less different. Molecular mechanism of the ferroelectric phase transition is proposed. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 24]
机译:通过X射线衍射法在顺电(T = 295(2)和360(2)K)和铁电(T = 180(K)中确定了亚磷酸氢亚硝酸盐(GPI)及其氘代类似物(DGPI)的晶体结构。 2)和295(2)K)阶段。顺电相的晶体结构与Averbuch-Pouchot [Acta Cryst。 C 49(1993)815]。在氘代晶体中,亚磷酸酯间的氢键比正常晶体中的更长(约0.03埃)。在铁电相中,晶体保持为单斜晶且具有空间群P2(1)。由于对称性降低,铁电相中出现了两种甘氨酸阳离子(GA和GB)和两种亚磷酸氢根阴离子(PA和PB)。亚磷酸氢键之间的质子是有序的。对于GPI,PA(1.314(10)埃)和PB(1.222(9)埃)的亚磷酸氢根阴离子的P-H距离显着不同。它们在DGPI晶体中的P-D类似物(1.310(10)和1.279(9)埃)相差不大。提出了铁电相变的分子机理。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:24]

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