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Hetero- and homo-leptic Ru(II) catalyzed synthesis of cyclic carbonates from CO2; Synthesis, spectroscopic characterization and electrochemical properties

机译:杂配和均配的Ru(II)催化从CO2合成环状碳酸酯;合成,光谱表征和电化学性质

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Based on the a ligand BDPPZ [(9a,13a-dihydro-4,5,9,14-tetraaza-benzo[b]triphenylene-11-yl)-phenyl-methanone] (1) and its polypyridyl hetero- and homoleptic Ru(II) metal complexes, [Ru(bpy)2L](PF6)2 (2), [Ru(phen)2L](PF6)2 (3), [Ru(dafo)2L](PF6)2 (4), [Ru(dcbpy)2L](PF6)2 (5) and [RuL3](PF6)2 (6) (where, L = ligand, bpy = 2,2′-bipyridine, phen = 1,10-phenantroline, dafo = 4,5-diazafluoren-9-one and dcbpy = 3,3′-dicarboxy-2,2′-bipyridine), have been synthesized and characterized by elemental analysis, UV–vis, FT-IR, 1H and 13C-NMR spectra (for ligand), molar conductivity measurements and X-ray powder techniques. The electrochemical parameters of the substituted ligand and its polypyridyl hetero- and homoleptic Ru(II) metal complexes are reported by cyclic voltammetry. UV–vis spectroscopy is used to compare the differences between the conjugated π systems in this ligand and its Ru(II) metal complexes. The polypyridyl hetero- and homoleptic Ru(II) metal complexes also tested as catalysts for the formation of cyclic organic carbonates from carbon dioxide and liquid epoxides which served as both reactant and solvent. The results showed that the [Ru(L)3](PF6)2 (6) complex is more efficient than the other Ru(II) complexes for the formation of cyclic organic carbonates from carbon dioxide. Copyright © 2010 John Wiley & Sons, Ltd.
机译:基于a配体BDPPZ [(9a,13a-dihydro-4,5,9,14-四氮杂-苯并[b]三亚苯基-11-基)-苯基甲酮](1)及其多吡啶基杂配和均配Ru (II)金属配合物[Ru(bpy) 2 L](PF 6 2 (2),[Ru(phen)< sub> 2 L](PF 6 2 (3),[Ru(dafo) 2 L](PF < sub> 6 2 (4),[Ru(dcbpy) 2 L](PF 6 2 (5)和[RuL 3 ](PF 6 2 (6)(其中L =配体,bpy =已合成并表征了2,2'-联吡啶,phen = 1,10-菲咯啉,dafo = 4,5-二氮杂芴-9-one和dcbpy = 3,3'-di羧基-2,2'-联吡啶元素分析,UV-vis,FT-IR, 1 H和 13 C-NMR光谱(用于配体),摩尔电导率测量和X射线粉末技术。通过循环伏安法报道了取代的配体及其聚吡啶基杂合和Ru(II)金属配合物的电化学参数。紫外可见光谱用于比较该配体中的共轭π系统与其Ru(II)金属配合物之间的差异。还测试了聚吡啶基杂配和均配的Ru(II)金属配合物作为催化剂的作用,该催化剂由用作反应物和溶剂的二氧化碳和液态环氧化物形成环状有机碳酸酯。结果表明[Ru(L) 3 ](PF 6 2 (6)配合物比其他Ru( II)由二氧化碳形成环状有机碳酸酯的络合物。版权所有©2010 John Wiley&Sons,Ltd.

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