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中性发光二膦基吡咯和吲哚亚胺铜(I)配合物的合成与表征。

Synthesis and characterization of neutral luminescent diphosphine pyrrole- and indole-aldimine copper(I) complexes.

机构信息

Department of Chemistry, University of Rochester, Rochester, New York 14627, USA.

出版信息

Inorg Chem. 2011 Aug 1;50(15):7172-88. doi: 10.1021/ic2007588. Epub 2011 Jun 29.

Abstract

Heteroleptic copper(I) complexes of the types [Cu(N,N)(P,P)] and [Cu(N,O)(P,P)], where (P,P) = phosphine (PPh(3)) or diphosphine (dppb, DPEPHOS, XANTPHOS), (N,N) = pyrrole-2-phenylcarbaldimine, 2PyN: [Cu(2PyN)(PPh(3))(2)] (1), [Cu(2PyN) (dppb)] (2), [Cu(2PyN)(DPEPHOS)] (3), and [Cu(2PyN)(XANTPHOS)] (4), (N,N) = indole-2-phenylcarbaldimine, 2IndN: [Cu(2IndN)(DPEPHOS)] (8), and (N,O) = pyrrole-2-carboxaldehyde, 2PyO: [Cu(2PyO)(DPEPHOS)] (5), [Cu(2PyO)(XANTPHOS)] (6), or (N,O) = indole-2-carboxaldehyde, 2IndO: [Cu(2IndO)(DPEPHOS)] (7), were synthesized and characterized by multinuclear NMR spectroscopy, electronic absorption spectroscopy, fluorescence spectroscopy, and X-ray crystallography (1-3, 5-8). The complexes with aldimine ligands are thermally stable, and sublimation of 2-4 was possible at T = 230-250 °C under vacuum. All complexes exhibit long-lived emission in solution, in the solid state, and in frozen glasses. The excited states have been assigned as mixed intraligand and metal-to-ligand charge transfer (3)(MLCT + π-π*) transitions through analysis of the photophysical properties and DFT calculations on representative examples.

摘要

异核铜 (I) 配合物的类型 [Cu(N,N)(P,P)] 和 [Cu(N,O)(P,P)],其中 (P,P) = 膦 (PPh3) 或双膦 (dppb、DPEPHOS、XANTPHOS),(N,N) = 吡咯-2-苯甲脒、2PyN:[Cu(2PyN)(PPh3)(2)] (1)、[Cu(2PyN)(dppb)] (2)、[Cu(2PyN)(DPEPHOS)] (3) 和 [Cu(2PyN)(XANTPHOS)] (4),(N,N) = 吲哚-2-苯甲脒、2IndN:[Cu(2IndN)(DPEPHOS)] (8) 和 (N,O) = 吡咯-2-甲醛、2PyO:[Cu(2PyO)(DPEPHOS)] (5)、[Cu(2PyO)(XANTPHOS)] (6) 或 (N,O) = 吲哚-2-甲醛、2IndO:[Cu(2IndO)(DPEPHOS)] (7),通过多核 NMR 光谱、电子吸收光谱、荧光光谱和 X 射线晶体学进行了合成和表征 (1-3、5-8)。带有亚胺配体的配合物热稳定性高,在 230-250°C 下在真空中可升华 2-4。所有配合物在溶液中、固态中和冷冻玻璃中均具有长寿命发射。通过分析光物理性质和代表性示例的 DFT 计算,将激发态分配为混合的配体内和金属到配体电荷转移 (3)(MLCT + π-π*) 跃迁。

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