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嵌入三维框架晶格中的混合配体羟基铜(II)/哒嗪簇合物。

Mixed-ligand hydroxocopper(II)/pyridazine clusters embedded into 3D framework lattices.

作者信息

Degtyarenko Anna S, Handke Marcel, Krämer Karl W, Liu Shi-Xia, Decurtins Silvio, Rusanov Eduard B, Thompson Laurence K, Krautscheid Harald, Domasevitch Konstantin V

机构信息

Inorganic Chemistry Department, Taras Shevchenko National University of Kyiv, Volodimirska Street 64/13, Kyiv 01601, Ukraine.

出版信息

Dalton Trans. 2014 Jun 14;43(22):8530-42. doi: 10.1039/c4dt00174e.

Abstract

Rational combination of pyridazine, hydroxo and carboxylate bridging ligands led to the assembly of three types of mixed-ligand polynuclear Cu(II) clusters (A: [Cu2(μ-OH)(μ-pdz)(μ-COO)]; B: [Cu4(μ3-OH)2(μ-pdz)2]; C: [Cu5(μ-OH)2(μ-pdz)4(μ-COO)2(μ-H2O)2]) and their integration into 3D framework structures. Mixed-ligand complexes [Cu2(μ-OH){TMA}(L)(H2O)] (1), [Cu4(μ3-OH)2{ATC}2(L)2(H2O)2]·H2O (2) [Cu4(μ3-OH)2{TDC}3(L)2(H2O)2]·7H2O (3) (L = 1,3-bis(pyridazin-4-yl)adamantane; TMA(3-) = benzene-1,3,5-tricarboxylate, ATC(3-) = adamantane-1,3,5-tricarboxylate, TDC(2-) = 2,5-thiophenedicarboxylate) and [Cu5(μ-OH)2{X}4(L)2(H2O)2]·nH2O (X = benzene-1,3-dicarboxylate, BDC(2-), n = 5 (4) and 5-hydroxybenzene-1,3-dicarboxylate, HO-BDC(2-), n = 6 (5)) are prepared under hydrothermal conditions. Trigonal bridges TMA(3-) and ATC(3-) generate planar Cu(II)/carboxylate subtopologies further pillared into 3D frameworks (1: binodal 3,5-coordinated, doubly interpenetrated tcj-3,5-Ccc2; 2: binodal 3,8-coordinated tfz-d) by bitopic pyridazine ligands. Unprecedented triple bridges in 1 (cluster of type A) support short CuCu separations of 3.0746(6) Å. The framework in 3 is a primitive cubic net (pcu) with multiple bis-pyridazine and TDC(2-) links between the tetranuclear nodes of type . Compounds 4 and 5 adopt uninodal ten-coordinated framework topologies (bct) embedding unprecedented centrosymmetric open-chain pentanuclear clusters of type C with two kinds of multiple bridges, Cu(μ-OH)(μ-pdz)2Cu and Cu(μ-COO)(μ-H2O)Cu (CuCu distances are 3.175 and 3.324 Å, respectively). Magnetic coupling phenomena were detected for every type of cluster by susceptibility measurements of 1, 3 and 4. For binuclear clusters A in 1, the intracluster antiferromagnetic exchange interactions lead to a diamagnetic ground state (J = -17.5 cm(-1); g = 2.1). Strong antiferromagnetic coupling is relevant also for type B, which consequently results in a diamagnetic ground state (J1 = -110 cm(-1); J2 = -228 cm(-1), g = 2.07). For pentanuclear clusters of type C in 4, the exchange model is based on a strongly antiferromagnetically coupled central linear trinuclear Cu3 group (J1 = -125 cm(-1)) and two outer Cu centers weakly antiferromagnetically coupled to the terminal Cu ions of the triad (J2 = -12.5 cm(-1)).

摘要

哒嗪、羟基和羧酸盐桥联配体的合理组合导致三种类型的混合配体多核铜(II)簇(A:[Cu2(μ-OH)(μ-pdz)(μ-COO)];B:[Cu4(μ3-OH)2(μ-pdz)2];C:[Cu5(μ-OH)2(μ-pdz)4(μ-COO)2(μ-H2O)2])的组装及其整合到三维骨架结构中。在水热条件下制备了混合配体配合物[Cu2(μ-OH){TMA}(L)(H2O)](1)、[Cu4(μ3-OH)2{ATC}2(L)2(H2O)2]·H2O(2)、[Cu4(μ3-OH)2{TDC}3(L)2(H2O)2]·7H2O(3)(L = 1,3-双(哒嗪-4-基)金刚烷;TMA(3-) = 苯-1,3,5-三羧酸盐,ATC(3-) = 金刚烷-1,3,5-三羧酸盐,TDC(2-) = 2,5-噻吩二甲酸盐)和[Cu5(μ-OH)2{X}4(L)2(H2O)2]·nH2O(X = 苯-1,3-二羧酸盐,BDC(2-),n = 5(4)和5-羟基苯-1,3-二羧酸盐,HO-BDC(2-),n = 6(5))。三角桥TMA(3-)和ATC(3-)产生平面铜(II)/羧酸盐子拓扑结构,通过双位点哒嗪配体进一步支撑成三维骨架(1:双节点3,5-配位,双穿插tcj-3,5-Ccc2;2:双节点3,8-配位tfz-d)。1中前所未有的三桥(A类簇)支持短的Cu-Cu间距为3.0746(6) Å。3中的骨架是一个原始立方网(pcu),在该类四核节点之间有多个双哒嗪和TDC(2-)连接。化合物4和5采用单节点十配位骨架拓扑结构(bct),嵌入具有两种多桥Cu(μ-OH)(μ-pdz)2Cu和Cu(μ-COO)(μ-H2O)Cu(Cu-Cu距离分别为3.175和3.324 Å)的前所未有的中心对称开链五核C类簇。通过对1、3和4的磁化率测量,检测到每种类型簇的磁耦合现象。对于1中的双核簇A,簇内反铁磁交换相互作用导致抗磁基态(J = -17.5 cm(-1);g = 2.1)。强反铁磁耦合对于B类也很重要,因此导致抗磁基态(J1 = -110 cm(-1);J2 = -228 cm(-1),g = 2.07)。对于4中的C类五核簇,交换模型基于强反铁磁耦合的中心线性三核Cu3基团(J1 = -125 cm(-1))和两个外部Cu中心与三元组的末端Cu离子弱反铁磁耦合(J2 = -12.5 cm(-1))。

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