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自旋交叉化合物一阶自旋相变过程中自旋-弹性相互作用引起的压力诱导混合态

Pressure-Induced Mixed States Caused by Spin-Elastic Interactions during First-Order Spin Phase Transition in Spin Crossover Compounds.

作者信息

Li Ruixin, Kalita Viktor M, Fylymonov Hennadii, Xu Wei, Li Quanjun, Real José Antonio, Liu Bingbing, Levchenko Georgiy

机构信息

State Key Laboratory of Superhard Materials, International Centre of Future Science, Jilin University, Changchun 130012, China.

Institute of Magnetism of NAS of Ukraine and MES of Ukraine, 36-b Vernadsky Boulevard, Kyiv 03142, Ukraine.

出版信息

Inorg Chem. 2022 Sep 19;61(37):14752-14760. doi: 10.1021/acs.inorgchem.2c02124. Epub 2022 Sep 8.

Abstract

Recently, the possibility of exploiting the phenomenon of spin transition (ST) has been intensively investigated; therefore, it is particularly important to study the behavior of ST under various stimuli. Here, the shape and content of the intermediate phase of ST in Hoffmann-like compounds [Fe(Fpz)M(CN)] (M = Pt, Pd) under external stimuli are studied. For this purpose, magnetic and Raman spectroscopy studies were carried out. In pressure-induced spin transition (PIST), a mixture of high-spin and low-spin states appears, while in temperature-induced spin transition (TIST), a homogeneous state occurs. The first-order ST induced by pressure has a hysteresis but is not abrupt. However, the temperature-induced spin transition at ambient pressure is hysteretic and abrupt. To investigate this difference, we discuss using a thermodynamic model that considers elastic interactions, showing that the slope of the hysteresis loop is related to the appearance of internal pressure, which is related to the difference in sample compressibility under high-spin and low-spin states.

摘要

最近,利用自旋转变(ST)现象的可能性受到了深入研究;因此,研究ST在各种刺激下的行为尤为重要。在此,研究了霍夫曼类化合物[Fe(Fpz)M(CN)](M = Pt,Pd)在外部刺激下ST中间相的形状和含量。为此,进行了磁性和拉曼光谱研究。在压力诱导自旋转变(PIST)中,出现了高自旋态和低自旋态的混合物,而在温度诱导自旋转变(TIST)中,出现了均匀态。压力诱导的一级ST具有滞后现象但不突然。然而,常压下温度诱导的自旋转变是滞后且突然的。为了研究这种差异,我们讨论使用一个考虑弹性相互作用的热力学模型,结果表明滞后回线的斜率与内压的出现有关,而内压与高自旋态和低自旋态下样品压缩性的差异有关。

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