Goher MA, Cano J, Journaux Y, Abu-Youssef MA, Mautner FA, Escuer A, Vicente R
Chemistry Department, Faculty of Science, Kuwait University, Safat.
Chemistry. 2000 Mar 3;6(5):778-84. doi: 10.1002/(sici)1521-3765(20000303)6:5<778::aid-chem778>3.0.co;2-p.
Two new polymeric manganese-azido systems with formula Cs(n)-[[Mn(N3)3]n] (1) and [[N(C2H5)4]n][[Mn2-(N3)5(H2O)]n] (2) were synthesised and structurally characterised. Compound 1 crystallises in the P2(1)/n group and consists of a three-dimensional system with end-to-end and end-on azido bridges with the caesium atoms in the holes of the net. Magnetically, compound 1 is a rare case of a three-dimensional network with alternate ferro-antiferromagnetic interactions. Compound 2 crystallises in the P1 group and consists of double chains of manganese atoms bridged by end-on and, the exceptional, (mu-1,1,1)-azido bridges. Magnetically, compound 2 shows net ferromagnetic behaviour. Exact fit of the magnetic data was performed for the two compounds by means of Monte Carlo simulations based on the Metropolis algorithm on sets of 10 x 10 x 10 (1) and 1 x 1 x 320 (2) S = 5/2 classical spin centres.
合成并对两种新的具有化学式Cs(n)-[[Mn(N₃)₃]n] (1)和[[N(C₂H₅)₄]n][[Mn₂-(N₃)₅(H₂O)]n] (2)的聚合锰叠氮化物体系进行了结构表征。化合物1属于P2(1)/n空间群,由一个三维体系组成,其中叠氮桥以端对端和端连方式存在,铯原子位于网络的孔中。在磁性方面,化合物1是具有交替铁磁 - 反铁磁相互作用的三维网络的罕见例子。化合物2属于P1空间群,由锰原子的双链组成,通过端连以及特殊的(μ-1,1,1)-叠氮桥连接。在磁性方面,化合物2表现出净铁磁行为。通过基于Metropolis算法的蒙特卡罗模拟,对10×10×10 (1)和1×1×320 (2)个S = 5/2经典自旋中心的集合,对这两种化合物的磁性数据进行了精确拟合。