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关于层状钙钛矿型(CH3NH3)2[Fe(II)Cl4]中结构和磁相变的本质

On the nature of the structural and magnetic phase transitions in the layered perovskite-like (CH3NH3)2[Fe(II)Cl4].

作者信息

Han Jing, Nishihara Sadafumi, Inoue Katsuya, Kurmoo Mohamedally

机构信息

Department of Chemistry, Graduate School of Science, Hiroshima University , 1-3-1, Kagamiyama, Higashi Hiroshima, Hiroshima 739-8526, Japan.

出版信息

Inorg Chem. 2014 Feb 17;53(4):2068-75. doi: 10.1021/ic402535u. Epub 2014 Jan 28.

Abstract

In view of renewed interest in multiferroic for molecular systems, we re-examine the structural and magnetic properties of the potentially ferroic layered perovskite-like (CH3NH3)2[Fe(II)Cl4] due to its high-temperature magnetic ordering transition. The structures from several sets of diffraction data of single crystals consist of square-grid layers of corner-sharing FeCl6 octahedra and changes from the high-symmetry I4/mmm (T > 335 K) to the low-symmetry Pccn (T < 335 K). In the former the iron and bridging chlorine atoms are within the layer and the organic cations sit in the middle of each square grid, while in the latter the octahedra are tilted in pairs, two in and two out, progressively by up to 12° and the nitrogen atoms follow their motion to be nearer to the two-in pairs. Crystals are stable up to 450 K and display three phase transitions, two structural at 332 and 233 K and one magnetic at 95 K. The temperature dependences of the dc magnetization (zero-field and field-cooling modes) in different applied fields (10-10,000 Oe) on several aligned single crystals independently reveal a hidden-canted antiferromagnetic ground state of at least four sublattices and not the reported canted antiferromagnetic ground state. A metamagnetic critical field of only 200 Oe transforms it to a canted antiferromagnet. The estimated canting angle is 1.4° in zero field, and it folds to ca. 2.8° in a field of 50 kOe at 2 K. The easy axis is along 010, the hard axis is along 100, and the intermediate and canting axis is 001. Using the available extracted parameters the phase diagram has been constructed. This study provides evidence of a complex and intricate manifestation of the orientation, temperature, and field dependence of the interplay between anisotropy and coherent lengths, which would need further studies.

摘要

鉴于对分子体系多铁性材料的兴趣再度兴起,我们重新审视了潜在铁性的层状钙钛矿型(CH3NH3)2[Fe(II)Cl4]的结构和磁性,因其具有高温磁有序转变。来自几组单晶衍射数据的结构由角共享FeCl6八面体的方格层组成,且从高对称的I4/mmm(T > 335 K)转变为低对称的Pccn(T < 335 K)。在前者中,铁和桥连氯原子在层内,有机阳离子位于每个方格的中间,而在后者中,八面体成对倾斜,两个向内两个向外,最大倾斜达12°,氮原子随其运动而更靠近向内的两对。晶体在高达450 K时稳定,并显示出三个相变,两个结构相变分别在332 K和233 K,一个磁相变在95 K。在不同外加磁场(10 - 10,000 Oe)下,对几个取向的单晶进行的直流磁化强度(零场和场冷模式)的温度依赖性独立揭示了至少四个亚晶格的隐藏倾斜反铁磁基态,而非报道的倾斜反铁磁基态。仅200 Oe的亚磁临界场将其转变为倾斜反铁磁体。在零场下估计的倾斜角为1.4°,在2 K的50 kOe场中折叠至约2.8°。易轴沿010,硬轴沿100,中间和倾斜轴为001。利用可用的提取参数构建了相图。这项研究提供了关于各向异性和相干长度之间相互作用的取向、温度和场依赖性复杂而精细表现的证据,这需要进一步研究。

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