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Syntheses and characterization of four 2D metal-organic networks based on rigid imidazolate/carboxylate functionalized ligand - Effect of the torsion of the ligands on crystal structures and properties

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Indexed by:期刊论文

Date of Publication:2013-01-01

Journal:INORGANICA CHIMICA ACTA

Included Journals:SCIE

Volume:394

Page Number:117-126

ISSN No.:0020-1693

Key Words:Supramolecular; Self-assembly; Carboxylate; Coordination polymer; Thermal stability

Abstract:A series of rigid imidazolate/carboxylate functionalized ligands, X-(5,7-dioxopyrrolo[3,4-f]benzimidazole-6-yl)benzoic acid (X = 4, H(2)4-DPBB; X = 3, H(2)3-DPBB; X = 2, H(2)2-DPBB) were designed and used for the assemble reactions with Zn2+/Cd2+/Cu2+ ions. Four compounds, [Zn(4-DPBB)(H2O)] center dot DMSO center dot 0.5MeOH (1), [Cd(3-DPBB)(DMA)(1.8)(H2O)(0.2)] (2), [Cu(3-DPBB)(DMSO)(DMA)] (3) and [Cd(2-DPBB)(DMA)(2)] (4) have been synthesized and structurally characterized (where DMSO = dimethylsulfoxide, DMA = dimethyl acetylamide). Single crystal X-ray analyses show that the four compounds are all based on 3-connected single metal nodes and 3-connected spacers. Compounds 1 and 2 bear a 2D (6, 3)net structure, while 3 and 4 have a 2D (4, 8)-net. Compared with 2, 3 and 4, 1 exhibits a relatively high thermal stability which is up to similar to 550 degrees C. Luminescent analysis indicates that 1 and 2 exhibit linker-localized emissions while 4 has ligand-to-metal charge transfer (LMCT) emission. The effect of the torsion of the ligands on the crystal structures and properties of the four compounds is discussed. (C) 2012 Elsevier B. V. All rights reserved.

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