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Pressure-induced isosymmetric phase transition in sulfamic acid: A combined Raman and x-ray diffraction study

机译:氨基磺酸中压力诱导的等对称相变:拉曼和x射线衍射联合研究

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摘要

High-pressure behaviors of hydrogen-bonded molecular crystal, sulfamic acid (NH_3 ~+SO_3 -, SA), have been investigated using Raman spectroscopy and synchrotron X-ray diffraction (XRD) techniques up to the pressure of ~20 GPa. Under ambient conditions, molecules of SA are arranged in puckered layers and held together by hydrogen bonding and electrostatic interactions. It is proved by the Raman results that SA undergoes the molecular conformation changes in the pressure range 8.1-10.2 GPa. Then between 10.2 and 12.7 GPa, a phase transition is observed in both Raman and XRD patterns. Both the ambient and high-pressure phases of SA crystallize in Pbca symmetry with similar unit-cell dimensions. The mechanism of the phase transition involves relative movements of adjacent hydrogen-bonded molecules, accompanied by the rearrangement of hydrogen bonds and the enhancement of electrostatic interactions.
机译:氢键分子晶体氨基磺酸(NH_3〜+ SO_3--SA)的高压行为已通过拉曼光谱和同步辐射X射线衍射(XRD)技术研究到了约20 GPa的压力。在环境条件下,SA分子排列在起皱的层中,并通过氢键和静电相互作用保持在一起。通过拉曼结果证明,SA在8.1-10.2GPa的压力范围内经历了分子构象变化。然后在10.2和12.7 GPa之间,在拉曼和XRD图样中都观察到相变。 SA的环境相和高压相均以Pbca对称性结晶,具有相似的晶胞尺寸。相变的机理包括相邻氢键分子的相对运动,伴随着氢键的重排和静电相互作用的增强。

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