Zheng Yan-Zhen, Zhang Yue-Biao, Tong Ming-Liang, Xue Wei, Chen Xiao-Ming
MOE Laboratory of Bioinorganic and Synthetic Chemistry, State Key Laboratory of Optoelectronic Materials and Technologies, School of Chemistry & Chemical Engineering, Sun Yat-Sen University, Guangzhou 510275, China.
Dalton Trans. 2009 Feb 28(8):1396-406. doi: 10.1039/b815843f.
Nine new coordination polymers: Cu3(ipO),(pyz)2, Cu3(ipO)2(4-phpy)(H2O)2, [Cu(ip)(4-phpy)2] (7), Cu3(ipO)2(H2O)2, Co(phen)(ip)(H2O), [Co3(1,2,3-btc)2(4,4'-bpy)2(H2O)2].2H2O(10), [Ni(1,2,3-btcH)(4,4'-bpy)(H2O)].H2O(11), [Cd5(1,2,3-btc),(1,2,3-btcH)2(4,4'-bpy)3(H2O)2] (12) and (1,2,3-btcH3)(4,4'-bpy) (13)(1,2,3-btcH3 = 1,2,3-benzenetricarboxylic acid, ipO = 2-hydroxyisophthalate, 4,4'-bpy = 4,4'-bipyridine, pyz = pyrazine, 4-phpy = 4-phenyl-pyridine and phen = o-phenanthroline) have been hydrothermally synthesized. This family of compounds show the role of the N-containing heterocyclic ligands and Cu(II) ions in the metal-ligand reactions. These results suggest that the hydroxylation requires Cu(II) ions as the oxidant, rather than the presence of N-containing heterocyclic ligands, while the decarboxylate procedure requires high temperature and basic condition rather than the participation of Cu(II) ions. The obtained compounds show versatile structures and magnetic properties due to the flexibility of the carboxylate ligands. Compound 5 shows dominated antiferromagnetic interaction in the [Cu2(mu-ipO)2] unit, and no long-range magnetic ordering behaviour. Compound 10 has a topologically ferrimagnetic chain with alternating Co(II)oct, Co(II)tet(oct = octahedral, tet = tetrahedal) spin arrangement. The Co(II)tet and Co(II)oct ions are bridged by similar syn-anti carboxylates (Co(II)tet...Co(II)oct 4.616 and 4.735 A). Such a chain shows ferro- and antiferro- magnetic interactions and no long-range magnetic ordering behaviour was observed. Compound 11 has a antiferromagnetic coupled syn-anti carbxylate-bridged Ni(II) chain (J = 1.48(2) K), and shows long-range magnetic order below 2.6 K due to the extensive hydrogen bonds between the chains.
Cu3(ipO),(pyz)2、Cu3(ipO)2(4-phpy)(H2O)2、[Cu(ip)(4-phpy)2] (7)、Cu3(ipO)2(H2O)2、Co(phen)(ip)(H2O)、[Co3(1,2,3-btc)2(4,4'-bpy)2(H2O)2].2H2O(10)、[Ni(1,2,3-btcH)(4,4'-bpy)(H2O)].H2O(11)、[Cd5(1,2,3-btc),(1,2,3-btcH)2(4,4'-bpy)3(H2O)2] (12) 和 (1,2,3-btcH3)(4,4'-bpy) (13)(1,2,3-btcH3 = 1,2,3-苯三甲酸,ipO = 2-羟基间苯二甲酸,4,4'-bpy = 4,4'-联吡啶,pyz = 吡嗪,4-phpy = 4-苯基吡啶,phen = 邻菲啰啉)。该系列化合物展示了含氮杂环配体和铜(II)离子在金属-配体反应中的作用。这些结果表明,羟基化反应需要铜(II)离子作为氧化剂,而不是含氮杂环配体的存在,而脱羧过程需要高温和碱性条件,而非铜(II)离子的参与。由于羧酸配体的灵活性,所得到的化合物呈现出多样的结构和磁性能。化合物5在[Cu2(μ-ipO)2]单元中表现出主导的反铁磁相互作用,且没有长程磁有序行为。化合物10具有拓扑亚铁磁链,其钴(II)八面体和钴(II)四面体(八面体 = 八面体,四面体 = 四面体)自旋排列交替。钴(II)四面体和钴(II)八面体离子由类似的顺-反式羧酸盐桥连(钴(II)四面体...钴(II)八面体 4.616 和 4.735 Å)。这样的链展示了铁磁和反铁磁相互作用,且未观察到长程磁有序行为。化合物11具有反铁磁耦合的顺-反式羧酸盐桥连镍(II)链(J = 1.48(2) K),并且由于链间广泛的氢键作用,在2.6 K以下呈现长程磁有序。