Shanghai Key Laboratory of Green Chemistry and Chemical Processes, Department of Chemistry, East China Normal University, Shanghai 200062, China.
Inorg Chem. 2009 Jul 6;48(13):6142-51. doi: 10.1021/ic900472d.
A series of transition metal coordination polymers with azide and flexible zwitterionic dicarboxylate ligands was synthesized and structurally and magnetically characterized. These compounds are formulated as [M(2)(L(1))(N(3))(4)] (L(1) = 4,4'-trimethylenedipyridinio-N,N'-diacetate and M = Mn, 1; Co, 2; and Ni, 3) and [ML(2)(N(3))(6)(H(2)O)(2)] (L(2) = 4,4'-dipyridinio-N,N'-diacetate and M = Mn, 4; Co, 5). The isomorphous compounds 1-3 consist of two-dimensional coordination layers in which the anionic uniform chains with mixed triple bridges (two end-on (EO) azides and a syn-syn carboxylate) are cross-linked by the flexible cationic 4,4'-trimethylenedipyridinium spacers, while the isomorphous compounds 4 and 5 consist of alternating chains with triple (two EO azides plus a carboxylate) and double (two end-to-end azides) bridges, the 4,4'-dipyridinium spacers serving as side bridges along the chain. Magnetic studies demonstrated that the triple bridge transmits antiferromagnetic coupling in the Mn(II) compounds (1 and 4) but ferromagnetic coupling in the Co(II) and Ni(II) species (2, 3, and 5). The differences have been discussed in terms of the collaboration or competition between the carboxylate and azide pathways. Compound 4 exhibits alternating antiferromagnetic interactions, while alternating ferromagnetic-ferromagnetic-antiferromagnetic interactions with spin canting are suggested for 5.
一系列含有叠氮化物和柔性两性离子二羧酸配体的过渡金属配位聚合物被合成并进行了结构和磁性表征。这些化合物的化学式为[M(2)(L(1))(N(3))(4)](L(1)=4,4'- 二甲基二吡啶-N,N'-二乙酸盐,M=Mn,1;Co,2;Ni,3)和[ML(2)(N(3))(6)(H(2)O)(2)](L(2)=4,4'-二吡啶-N,N'-二乙酸盐,M=Mn,4;Co,5)。同晶化合物 1-3 由二维配位层组成,其中阴离子均匀链与混合三联桥(两个端到端的叠氮化物和一个顺式顺式羧酸盐)通过柔性阳离子 4,4'-二甲基二吡啶间隔物交联,而同晶化合物 4 和 5 由交替的链组成,具有三联桥(两个端到端的叠氮化物加上一个羧酸盐)和双键(两个端到端的叠氮化物)桥,4,4'-二吡啶间隔物作为沿链的侧桥。磁性研究表明,三联桥在 Mn(II)化合物(1 和 4)中传递反铁磁耦合,但在 Co(II)和 Ni(II)物种(2、3 和 5)中传递铁磁耦合。差异已根据羧酸盐和叠氮化物途径的协作或竞争进行了讨论。化合物 4 表现出交替的反铁磁相互作用,而化合物 5 则表现出交替的铁磁-铁磁-反铁磁相互作用,同时伴有自旋倾斜。