Yuan Mengyun, Levchenko Georgiy, Li Quanjun, Berezhnaya Ludmila, Fylymonov Hennagii, Gaspar Ana Belén, Seredyuk Maksym, Real José Antonio
State Key Laboratory of Superhard Materials, International Centre of Future Science, Jilin University, Changchun 130012, China.
Donetsk Physical - Technical Institute named after A. A. Galkin NANU, Kiiv 03028, Ukraine.
Inorg Chem. 2020 Aug 3;59(15):10548-10556. doi: 10.1021/acs.inorgchem.0c00978. Epub 2020 Jul 13.
Two types of experiments conducted to investigate the effect of pressure on the spin crossover (SCO) properties of the 2D Fe(II) coordination polymer formulated {Fe[bipy(ttr)]} are reported, namely, (1) magnetic measurements performed at variable temperature and at fixed pressure and (2) visible spectroscopy at variable pressure and fixed temperature. The magnetic experiments carried out under a hydrostatic pressure constraint of 0.04, 0.08, and 0.8 GPa reveal a two-step spin transition behavior. The characteristic critical temperatures of the spin transition are shifted upward in temperature as pressure increases. The slope of the straight-line of the vs plot, d/d, is 775 K/GPa and 300 K/GPa, for the high temperature and the low temperature steps, respectively. These values are remarkably large and denote the extreme sensitivity of the material to the application of pressure. Indeed, the visible spectroscopic measurements performed at 293 K show that a complete spin transition is induced at pressures as low as 0.4 GPa. Moreover, the pressure-induced spin transition is reversible and shows an asymmetric hysteresis. An analysis of the cooperative interactions of the thermal- and pressure-induced spin transition in the framework of the model of elastic interactions reveals that the elastic energy of the lattice as well as the interaction parameter between the SCO centers change during the course of the spin transition. Consequently, the character of the spin transition varies from abrupt for the high temperature step to continuous for the low temperature step.
报道了为研究压力对二维铁(II)配位聚合物{Fe[bipy(ttr)]}的自旋交叉(SCO)性质的影响而进行的两类实验,即:(1)在可变温度和固定压力下进行的磁性测量,以及(2)在可变压力和固定温度下进行的可见光谱测量。在0.04、0.08和0.8 GPa的静水压力约束下进行的磁性实验揭示了两步自旋转变行为。随着压力增加,自旋转变的特征临界温度在温度上向上移动。对于高温和低温步骤, 与 图的直线斜率d / d分别为775 K/GPa和300 K/GPa。这些值非常大,表明该材料对压力施加极为敏感。实际上,在293 K下进行的可见光谱测量表明,在低至0.4 GPa的压力下会诱导出完全的自旋转变。此外,压力诱导的自旋转变是可逆的,并且显示出不对称滞后现象。在弹性相互作用模型的框架内对热诱导和压力诱导的自旋转变的协同相互作用进行分析表明,在自旋转变过程中,晶格的弹性能以及SCO中心之间的相互作用参数会发生变化。因此,自旋转变的特征从高温步骤的突然转变为低温步骤的连续转变。