Department of Chemistry, University College of Science, University of Calcutta, 92, A.P.C. Road, Kolkata, 700 009, India.
Dalton Trans. 2011 Apr 7;40(13):3295-304. doi: 10.1039/c0dt01521k. Epub 2011 Feb 23.
The preparation, crystal structures and magnetic properties of two new isoelectronic and isomorphous formate- and nitrite-bridged 1D chains of Mn(III)-salen complexes, Mn(salen)(HCOO) (1) and Mn(salen)(NO(2)) (2), where salen is the dianion of N,N'-bis(salicylidene)-1,2-diaminoethane, are presented. The structures show that the salen ligand coordinates to the four equatorial sites of the metal ion and the formate or nitrite ions coordinate to the axial positions to bridge the Mn(III)-salen units through a syn-antiμ-1κO:2κO' coordination mode. Such a bridging mode is unprecedented in Mn(III) for formate and in any transition metal ion for nitrite. Variable-temperature magnetic susceptibility measurements of complexes 1 and 2 indicate the presence of ferromagnetic exchange interactions with J values of 0.0607 cm(-1) (for 1) and 0.0883 cm(-1) (for 2). The ac measurements indicate negligible frequency dependence for 1 whereas compound 2 exhibits a decrease of χ(ac)' and a concomitant increase of χ(ac)'' on elevating frequency around 2 K. This finding is an indication of slow magnetization reversal characteristic of single-chain magnets or spin-glasses. The μ-nitrito-1κO:2κO' bridge seems to be a potentially superior magnetic coupler to the formate bridge for the construction of single-molecule/-chain magnets as its coupling constant is greater and the χ(ac)' and χ(ac)'' show frequency dependence.
两种新型等电子和等构的甲酸盐和亚硝酸盐桥联的 1D 链的锰(III)-salen 配合物[Mn(salen)(HCOO)](n)(1)和[Mn(salen)(NO2)](n)(2)的制备、晶体结构和磁性性质被提出。结构表明,salen 配体与金属离子的四个赤道位置配位,甲酸盐或亚硝酸盐离子与轴向位置配位,通过 syn-antiμ-1κO:2κO'配位模式桥接 Mn(III)-salen 单元。这种桥接模式在甲酸盐中的锰(III)和任何过渡金属离子中的亚硝酸盐中都是前所未有的。配合物 1 和 2 的变温磁化率测量表明存在铁磁交换相互作用,J 值分别为 0.0607 cm(-1)(对于 1)和 0.0883 cm(-1)(对于 2)。交流测量表明 1 几乎没有频率依赖性,而化合物 2 在约 2 K 时显示出 χ(ac)''的减小和 χ(ac)''的增加,这表明其具有慢磁反转特性,类似于单链磁体或自旋玻璃。μ-亚硝基-1κO:2κO'桥似乎是构建单分子/链磁体的潜在优越的磁性耦合体,因为其耦合常数更大,并且 χ(ac)''和 χ(ac)''表现出频率依赖性。