State Key Laboratory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, People's Republic of China.
Inorg Chem. 2010 Sep 20;49(18):8474-80. doi: 10.1021/ic101033n.
Four isostructural metal monophosphonates, M{(2-C(5)H(4)NO)CH(2)PO(3)}(H(2)O)(2) with M = Co (1), Ni (2), Mn (3), and Cd (4), were synthesized and structurally characterized. These compounds show a double-chain structure in which the M(2)(μ-O)(2) dimers are connected by O-P-O bridges. The magnetic responses of 1-3 were investigated over a wide range of magnetic fields (up to 10 T) and temperatures (down to 50 mK). Except for 4, which is weakly diamagnetic from 2 K to room temperature, the dominant magnetic interactions are antiferromagnetic. Isothermal magnetic field sweeps at 50 mK provide signatures in the magnetic responses that are associated with antiferromagnetic to field-induced fully polarized (magnetically saturated) transitions. Analysis of the magnetic data indicates that 1 and 2 form magnetic dimer-like clusters with weak dimer-dimer interactions present. Contrastingly, the magnetic interactions present in 3 are significantly weaker, so a definitive description of the magnetism of this compound is elusive.
四种同构的金属单膦酸盐,M{(2-C(5)H(4)NO)CH(2)PO(3)}(H(2)O)(2),其中 M = Co (1),Ni (2),Mn (3)和 Cd (4),被合成并进行了结构表征。这些化合物呈现出双链结构,其中 M(2)(μ-O)(2)二聚体通过 O-P-O 桥连接。1-3 的磁响应在很宽的磁场(高达 10 T)和温度(低至 50 mK)范围内进行了研究。除了 4 在 2 K 到室温之间表现出弱抗磁性之外,主要的磁相互作用是反铁磁的。在 50 mK 下的等温磁场扫描提供了与反铁磁到场诱导完全极化(磁饱和)转变相关的磁响应特征。磁数据的分析表明,1 和 2 形成了具有弱二聚体-二聚体相互作用的磁二聚体样簇。相比之下,3 中存在的磁相互作用明显较弱,因此难以对该化合物的磁性进行明确描述。