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次磷酸甲脒锰单晶的声子特性及有序-无序相变机制

Phonon properties and mechanism of order-disorder phase transition in formamidinium manganese hypophosphite single crystal.

作者信息

Ptak M, Mączka M

机构信息

Institute of Low Temperature and Structure Research, Polish Academy of Sciences, Wrocław, Poland.

Institute of Low Temperature and Structure Research, Polish Academy of Sciences, Wrocław, Poland.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2020 Apr 5;230:118010. doi: 10.1016/j.saa.2019.118010. Epub 2020 Jan 7.

Abstract

The detailed temperature-dependent IR and Raman spectra were used to study and understand the mechanism of structural phase transition occurring at 175 K in manganese hypophosphite templated with formamidinium (FA) ions, [FA]Mn(HPOO), which adopts a perovskite-like architecture. The structural transformation between the C2/c and the P2/c monoclinic phases has a complicated nature and is mainly driven by re-orientational motions of the FA cations but it is also accompanied by a significant distortion of the MnO octahedral units as well as steric-forced changes of the PH groups determining the off-center shifts of FA cations in the cages. The re-orientational motions of formamidinium cations at 175 K are followed by slight changes of their geometry and re-arrangement of hydrogen bonds (HBs). The strong temperature-dependences of bands corresponding to vibrations involving hydrogen bonding reveal the highly-dynamic character of this phase transition and strong nature of created HBs. The most pronounced changes are observed for the modes corresponding to the formamidinium cation, proving that the phase transition has an order-disorder character.

摘要

利用详细的温度相关红外光谱和拉曼光谱,研究并理解了以甲脒(FA)离子为模板的次磷酸锰[FA]Mn(HPOO)在175K时发生的结构相变机制,该化合物具有类钙钛矿结构。C2/c和P2/c单斜相之间的结构转变具有复杂的性质,主要由FA阳离子的重新取向运动驱动,但同时也伴随着MnO八面体单元的显著畸变以及PH基团的空间强制变化,这些变化决定了笼中FA阳离子的偏心位移。甲脒阳离子在175K时的重新取向运动之后,其几何形状会发生轻微变化,氢键(HBs)也会重新排列。对应于涉及氢键振动的谱带的强烈温度依赖性揭示了该相变的高动态特性以及所形成氢键的强性质。在对应于甲脒阳离子的模式中观察到最明显的变化,证明该相变具有有序-无序特征。

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