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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Order?Disorder Transition and Weak Ferromagnetism in the Perovskite Metal Formate Frameworks of [(CH_3)_2NH_2][M(HCOO)_3] and [(CH_3)_2ND_2][M(HCOO)_3] (M = Ni, Mn)
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Order?Disorder Transition and Weak Ferromagnetism in the Perovskite Metal Formate Frameworks of [(CH_3)_2NH_2][M(HCOO)_3] and [(CH_3)_2ND_2][M(HCOO)_3] (M = Ni, Mn)

机译:[(CH_3)_2NH_2] [M(HCOO)_3]和[(CH_3)_2ND_2] [M(HCOO)_3]的钙钛矿金属构架中的有序无序跃迁和弱铁磁性

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摘要

We report the synthesis, crystal structure, thermal, dielectric, Raman, infrared, and magnetic properties of hydrogen and deuterated divalent metal formates, [(CH_3)_2NH_2][M(HCOO)_3] and [(CH_3)_2ND_2][M- (HCOO)_3], where M = Ni, Mn. On the basis of Raman and IR data, assignment of the observed modes to respective vibrations of atoms is proposed. The thermal studies show that for the Ni compounds deuteration leads to a decrease of the phase transition temperature T_c by 5.6 K, whereas it has a negligible effect on T_c in the Mn analogues. This behavior excludes the possibility of proton (deuteron) movement along the N?H···O (N?D···O) bonds as the microscopic origin of the first-order phase transition observed in these crystals below 190 K. According to single-crystal X-ray diffraction, the dimethylammonium (DMA) cations are dynamically disordered at room temperature, because the hydrogen bonds between the NH_2 (ND_2) groups and the metal-formate framework are disordered. The highly dynamic nature of hydrogen bonds in the high-temperature phases manifests in the Raman and IR spectra through very large bandwidth of modes involving vibrations of the NH_2 (ND_2) groups. The abrupt decrease in the bandwidth and shifts of modes near T_c signifies the ordering of hydrogen bonds and DMA~+ cations as well as significant distortion of the metal-formate framework across the phase transition. However, some amount of motion is retained by the DMA~+ cation in the ferroelectric phase and a complete freezing-in of this motion occurs below 100 K. The dielectric studies reveal pronounced dielectric dispersion that can be attributed to slow dynamics of large DMA~+ cations. The low-temperature studies also show that magnetic properties of the studied compounds can be explained assuming that they are ordered ferrimagnetically with nearly compensated magnetic moments of Ni and Mn. IR data reveal weak anomalies below 40 K that arise due to spin-phonon coupling. Our results also show that due to structural phase transition more significant distortion of the metal-formate framework occurs for the deuterated samples.
机译:我们报告了氢和氘代二价金属甲酸盐[(CH_3)_2NH_2] [M(HCOO)_3]和[(CH_3)_2ND_2] [M-的合成,晶体结构,热,介电,拉曼,红外和磁性能(HCOO)_3],其中M = Ni,Mn。根据拉曼和红外数据,提出了将观测模式分配给原子各自的振动的方法。热学研究表明,对于镍化合物,氘化导致相变温度T_c降低5.6 K,而在Mn类似物中对T_c的影响可忽略不计。这种行为排除了质子(氘核)沿着N 2 H··O(N 2 D···O)键运动的可能性,这是在低于190 K的晶体中观察到的一级相变的微观起源。对于单晶X射线衍射,由于NH_2(ND_2)基团与金属甲酸酯骨架之间的氢键无序,因此二甲基铵(DMA)阳离子在室温下会动态无序。氢键在高温相中的高度动态特性通过涉及NH_2(ND_2)基团振动的模态带宽非常大而在拉曼光谱和IR光谱中得到体现。 T_c附近的带宽和模态的突然减小表示氢键和DMA〜+阳离子的有序排列以及整个相变过程中金属甲酸盐骨架的明显变形。但是,在铁电相中DMA〜+阳离子保留了一定量的运动,并且在100 K以下发生了该运动的完全冻结。介电研究表明,明显的介电色散可归因于大DMA〜的慢动力学。 +阳离子。低温研究还表明,假设所研究化合物的磁性能是假设的,这些化合物假设亚铁磁性以几乎补偿的Ni和Mn磁矩排序。红外数据显示,由于自旋声子耦合,在40 K以下出现了微弱的异常。我们的结果还表明,由于结构相变,氘代样品中金属甲酸盐骨架发生了更明显的变形。

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