Ben Salah Mohsen, Vilminot Serge, André Gilles, Richard-Plouet Mireille, Bourée-Vigneron Françoise, Mhiri Tahar, Kurmoo Mohamedally
Groupe des Matériaux Inorganiques, IPCMS, UMR 7504 CNRS-ULP, 23 rue du Loess, BP 43, 67034 Strasbourg Cedex 2, France.
Chemistry. 2004 Apr 19;10(8):2048-57. doi: 10.1002/chem.200305645.
[Mn(3)(OH)(2)(SO(4))(2)(H(2)O)(2)] and its deuterated analogue were synthesized by a hydrothermal technique and characterized by differential thermal analysis, thermogravimetric analysis, and IR spectroscopy. Its nuclear structure, determined by single-crystal X-ray analysis and Rietveld analysis of neutron powder-diffraction data, consists of a 3D network of chains of edge-sharing Mn(1)O(6), running along the c axis, connected by the apices of Mn(2)O(6) and SO(4) units. It is isostructural to the nickel analogue. Determination of the magnetic structure and measurements of magnetization and heat capacity indicate the coexistence of both magnetic long-range ordering (LRO) and short-range ordering (SRO) below a Néel temperature of 26 K, while the SRO is retained at higher temperatures. The moments of the two independent Mn atoms lie in the bc plane, and that of Mn(1) rotates continuously by 54 degrees towards the c axis on decreasing the temperature from 25 to 1.4 K. While the SRO may be associated with frustration of the moments within a Mn(3) trimer, the LRO is achieved by antiparallel alignment of the four symmetry-related trimers within the magnetic unit cell. A spin-flop field, measured by dc and ac magnetization on a SQUID, is observed at 15 kOe.
通过水热技术合成了[Mn(3)(OH)(2)(SO(4))(2)(H(2)O)(2)]及其氘代类似物,并通过差示热分析、热重分析和红外光谱对其进行了表征。通过单晶X射线分析和中子粉末衍射数据的Rietveld分析确定的其核结构,由沿c轴延伸的边缘共享Mn(1)O(6)链的三维网络组成,这些链通过Mn(2)O(6)和SO(4)单元的顶点相连。它与镍类似物同构。磁结构的测定以及磁化强度和热容量的测量表明,在26 K的奈尔温度以下,磁长程有序(LRO)和短程有序(SRO)共存,而SRO在较高温度下保留。两个独立的Mn原子的磁矩位于bc平面内,并且当温度从25 K降至1.4 K时,Mn(1)的磁矩朝着c轴连续旋转54度。虽然SRO可能与Mn(3)三聚体内磁矩的受挫有关,但LRO是通过磁晶胞内四个对称相关三聚体的反平行排列实现的。在15 kOe下观察到通过超导量子干涉仪上的直流和交流磁化测量得到的自旋翻转场。