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含羟基联吡啶类配体的双核铜(I)和四核混合价态铜(I,II)配合物的合成、晶体结构及物理性质

Syntheses, crystal structures, and physical properties of dinuclear copper(I) and tetranuclear mixed-valence copper(I,II) complexes with hydroxylated bipyridyl-like ligands.

作者信息

Zhang Xian-Ming, Tong Ming-Liang, Gong Meng-Lian, Lee Hung-Kay, Luo Li, Li King-Fai, Tong Ye-Xiang, Chen Xiao-Ming

机构信息

School of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou, China.

出版信息

Chemistry. 2002 Jul 15;8(14):3187-94. doi: 10.1002/1521-3765(20020715)8:14<3187::AID-CHEM3187>3.0.CO;2-9.

DOI:10.1002/1521-3765(20020715)8:14<3187::AID-CHEM3187>3.0.CO;2-9
PMID:12203348
Abstract

Four copper complexes with hydroxylated bipyridyl-like ligands, namely [Cu(2)(ophen)(2)] (1), [Cu(4)(ophen)(4)(tp)] (2), [Cu(4)(obpy)(4)(tp)] (3), and [Cu(4)(obpy)(4)(dpdc)].2H(2)O (4), (Hophen=2-hydroxy-1,10-phenanthroline, Hobpy=6-hydroxy-2,2'-bipyridine, tp=terephthalate, dpdc=diphenyl-4,4'-dicarboxylate) have been synthesized hydrothermally. X-ray single-crystal structural analyses of these complexes reveal that 1,10-phenanthroline (phen) or 2,2'-bipyridine (bpy) ligands are hydroxylated into ophen or obpy during the reaction, which provides structural evidence for the long-time argued Gillard mechanism. The dinuclear copper(I) complex 1 has three supramolecular isomers in the solid state, in which short copper-copper distances (2.66-2.68 A) indicate weak metal-metal bonding interactions. Each of the mixed-valence copper(i,ii) complexes 2-4 consists of a pair of Cu(2)(ophen)(2) or Cu(2)(obpy)(2) fragments bridged by a dicarboxylate ligand into a neutral tetranuclear dumbbell structure. Dinuclear 1 is an intermediate in the formation of 2 and can be converted into 2 in the presence of additional copper(II) salt and tp ligands under hydrothermal conditions. In addition to the ophen-centered pi-->pi* excited-state emission, 1 shows strong emissions at ambient temperature, which may be tentatively assigned as an admixture of copper-centered d-->s,p and MLCT excited states.

摘要

已通过水热法合成了四种带有羟基化联吡啶类配体的铜配合物,即[Cu(2)(ophen)(2)] (1)、[Cu(4)(ophen)(4)(tp)] (2)、[Cu(4)(obpy)(4)(tp)] (3)和[Cu(4)(obpy)(4)(dpdc)].2H₂O (4),(Hophen = 2 - 羟基 - 1,10 - 菲啰啉,Hobpy = 6 - 羟基 - 2,2'-联吡啶,tp = 对苯二甲酸根,dpdc = 二苯基 - 4,4'-二羧酸根)。对这些配合物的X射线单晶结构分析表明,在反应过程中1,10 - 菲啰啉(phen)或2,2'-联吡啶(bpy)配体被羟基化为ophen或obpy,这为长期以来备受争议的吉拉德机制提供了结构证据。双核铜(I)配合物1在固态时有三种超分子异构体,其中较短的铜 - 铜距离(2.66 - 2.68 Å)表明存在弱的金属 - 金属键相互作用。每个混合价态铜(i,ii)配合物2 - 4都由一对[Cu(2)(ophen)(2)]⁺或[Cu(2)(obpy)(2)]⁺片段通过一个二羧酸根配体桥联形成中性四核哑铃状结构。双核配合物1是形成2的中间体,在水热条件下,在额外的铜(II)盐和tp配体存在下可转化为2。除了以ophen为中心的π→π*激发态发射外,1在室温下还表现出强烈发射,这可能被初步归因于以铜为中心的d→s,p和MLCT激发态的混合。

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