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首页> 外文期刊>Crystal growth & design >Three azido-bridged Mn(II) complexes based on open-chain diazine Schiff-base ligands: Crystal structures and magnetic properties
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Three azido-bridged Mn(II) complexes based on open-chain diazine Schiff-base ligands: Crystal structures and magnetic properties

机译:基于开链二嗪席夫碱配体的三种叠氮桥联锰(II)配合物:晶体结构和磁性

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摘要

Three new Mn(II)-azido polymeric complexes [MnL1(N-3)(2)center dot CH3OH](n) (1) (L-1 = 1-(2-pyridyl)-l-amino-4-(6-bromo-2-pyridyl)-2,3-diaza-1,3-butadiene), [MnL2 (N-3)(2)](n) (2a) and [Mn-2(L-2)(2)(N-3)(4)](n) (2b) (L-2 = 1-(2-pyridyl)-l-amino-4-benzyl-2,3-diaza-1,3-butadiene) have been synthesized and crystallographically characterized, and their magnetic properties are studied. Complexes I and 2b show similar one-dimensional (ID) coordination polymeric structure, in which Mn(II) ions are alternately bridged by two end-to-end (EE) and two end-on (EO) azido ligands, resulting in zigzag Mn(II)-azido chains. Complex 2a has a ID structure, and the Mn(II) ions are connected by double EO azido ligands, forming a neutral ID uniform chain. Standing in their mother liquor for ca. 2 weeks or more, 2a is transformed to 2b completely. The structures of 2a and 2b are characterized, and the quite different magnetic properties based on this transformation of kinetic favored phase to thermodynamic favored phase are discussed. Magnetic analyses reveal that alternating ferro- and antiferromagnetic interactions are mediated through the alternating EO and EE azido bridges, and the J(F) and J(AF) parameters are 7.8(1) and - 10.8(1) for complex 1, respectively, 7.7(4) and - 1 1.2(1) cm(-1) for complex 2b, respectively. For 2a, on the contrary, magnetic analyses reveal that the ferromagnetic coupling interactions are mediated through the double EO azido bridges, and the J(F) is 1.4 cm(-1).
机译:三种新的Mn(II)-叠氮基聚合物络合物[MnL1(N-3)(2)中心点CH3OH](n)(1)(L-1 = 1-(2-吡啶基)-1-氨基-4-( 6-溴-2-吡啶基)-2,3-二氮杂-1,3-丁二烯),[MnL2(N-3)(2)](n)(2a)和[Mn-2(L-2)( 2)(N-3)(4)](n)(2b)(L-2 = 1-(2-吡啶基)-1-氨基-4-苄基-2,3-二氮杂-1,3-丁二烯)已经合成并结晶表征了它们的磁性。配合物I和2b显示相似的一维(ID)配位聚合物结构,其中Mn(II)离子被两个端到端(EE)和两个端上(EO)叠氮基配体交替桥接,从而形成锯齿形Mn(II)-叠氮基链。络合物2a具有ID结构,并且Mn(II)离子通过双EO叠氮基配体连接,形成中性的ID均匀链。站在他们的母酒中约。 2周或更长时间,2a完全转换为2b。对2a和2b的结构进行了表征,并讨论了基于动力学有利相到热力学有利相的这种完全不同的磁性能。磁性分析表明,交替的铁磁性和反铁磁性相互作用是通过交替的EO和EE叠氮桥介导的,对于复合物1,J(F)和J(AF)参数分别为7.8(1)和-10.8(1),对于复合物2b,分别为7.7(4)和-1 1.2(1)cm(-1)。相反,对于2a,磁性分析表明,铁磁耦合相互作用是通过双EO叠氮基桥介导的,而J(F)为1.4 cm(-1)。

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