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Magnetic Structure and Magnetic Properties of Synthetic Lindgrenite,Cu_3(OH)_2(MoO_4)_2

机译:合成菱铁矿Cu_3(OH)_2(MoO_4)_2的磁性结构和磁性

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摘要

Synthetic Cu_3(OH)_2(MoO_4)_2 consists of Cu_3(OH)_2 brucite ribbons of edge-sharing copper octahedra connected by MoO_4 into a 3D network as in the mineral,lindgrenite,for all temperatures between 1,5 and 300 K.Each ribbon consists of a triangular connection between two different types of copper atom (Cu(1) and 2 Cu(2)) via mu_3-OH.The MoO_4 acts both as one- and three-atom bridges to connect six Cu atoms belonging to three adjacent ribbons.The magnetic properties are consistent with those of ferrimagnetic chains,and the resulting moment of each chain is parallel below the long-range magnetic ordering at 13 K.The Curie constant is 0.468(1) emu K mol~(-1) of Cu; the Weiss temperature is -14.2(2) K,and the saturation magnetization at 2 K in 50 kOe is 0.41 N mu_B mol~(-1) of Cu.Analyses of the neutron powder diffraction reveal an ordered magnetic state where the moment of Cu(1) is antiparallel to those of the two Cu(2); all of them point along the a axis without any sign of geometrical frustration.Any degeneracy that may be present because of the triangular topology of the Cu atoms (s = 1/2) appears to be lifted by the distortion from an ideal equilateral geometry of the triangle.The entropy,estimated from the heat capacity measurements,attains 50% of the total of 17.7 J K~(-1) mol~(-1),close to that expected for three Cu atoms (3R In 2),up to the long range ordering temperature,and the remaining is associated with the low dimensionality of the material.
机译:合成的Cu_3(OH)_2(MoO_4)_2由边缘共享的八面体铜Cu_3(OH)_2八面体带组成,通过MoO_4连接到3D网络中,如在矿物,菱镁矿中,温度介于1,5到300 K之间。每个带由通过mu_3-OH在两种不同类型的铜原子(Cu(1)和2 Cu(2))之间的三角形连接组成.MoO_4既作为单原子桥又通过三原子桥连接六个属于三个相邻的带。磁性能与亚铁磁链的磁性能一致,并且在13 K时,每条链的力矩在远距离磁序以下均平行。居里常数为0.468(1)emu K mol〜(-1 )的铜; Weiss温度为-14.2(2)K,50 kOe中2 K时的饱和磁化强度为Cu的0.41 N mu_B mol〜(-1)。中子粉末衍射分析显示Cu的矩为有序磁态(1)与两个Cu(2)的反平行;它们全部沿a轴指向,没有任何几何上的挫折迹象。由于Cu原子的三角形拓扑(s = 1/2)可能出现的任何简并性似乎都由于理想的等边几何形状的畸变而消除了。根据热容测量结果估计,熵占总数的17.7 JK〜(-1)mol〜(-1)的50%,接近三个Cu原子(3R In 2)的预期值,直至长程订购温度,其余与材料的低尺寸有关。

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