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再探L-丙氨酸中压力诱导的相变

Pressure-induced phase transitions in L-alanine, revisited.

作者信息

Tumanov N A, Boldyreva E V, Kolesov B A, Kurnosov A V, Quesada Cabrera R

机构信息

Novosibirsk State University, REC-008, Pirogova 2, Novosibirsk 90, Russia.

出版信息

Acta Crystallogr B. 2010 Aug;66(Pt 4):458-71. doi: 10.1107/S010876811001983X. Epub 2010 Jul 12.

Abstract

The effect of pressure on L-alanine has been studied by X-ray powder diffraction (up to 12.3 GPa), single-crystal X-ray diffraction, Raman spectroscopy and optical microscopy (up to approximately 6 GPa). No structural phase transitions have been observed. At approximately 2 GPa the cell parameters a and b become accidentally equal to each other, but without a change in space-group symmetry. Neither of two transitions reported by others (to a tetragonal phase at approximately 2 GPa and to a monoclinic phase at approximately 9 GPa) was observed. The changes in cell parameters were continuous up to the highest measured pressures and the cells remained orthorhombic. Some important changes in the intermolecular interactions occur, which also manifest themselves in the Raman spectra. Two new orthorhombic phases could be crystallized from a MeOH/EtOH/H(2)O pressure-transmitting mixture in the pressure range 0.8-4.7 GPa, but only if the sample was kept at these pressures for at least 1-2 d. The new phases converted back to L-alanine on decompression. Judging from the Raman spectra and cell parameters, the new phases are most probably not L-alanine but its solvates.

摘要

通过X射线粉末衍射(高达12.3吉帕)、单晶X射线衍射、拉曼光谱和光学显微镜(高达约6吉帕)研究了压力对L-丙氨酸的影响。未观察到结构相变。在约2吉帕时,晶胞参数a和b偶然变得彼此相等,但空间群对称性没有变化。未观察到其他文献报道的两种相变(在约2吉帕时转变为四方相,在约9吉帕时转变为单斜相)。直到测量的最高压力,晶胞参数的变化都是连续的,且晶胞仍保持正交晶系。分子间相互作用发生了一些重要变化,这也在拉曼光谱中表现出来。在0.8 - 4.7吉帕的压力范围内,可以从甲醇/乙醇/水压力传递混合物中结晶出两个新的正交晶相,但前提是样品要在这些压力下保持至少1 - 2天。减压时,新相又转变回L-丙氨酸。从拉曼光谱和晶胞参数判断,新相很可能不是L-丙氨酸,而是其溶剂化物。

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