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卤化物对单核铜(I)配合物与吡唑并嘧啶和三苯基膦的发射的影响。

Halide impact on emission of mononuclear copper(I) complexes with pyrazolylpyrimidine and triphenylphosphine.

机构信息

Nikolaev Institute of Inorganic Chemistry, Siberian Branch of Russian Academy of Sciences, 3, Akad. Lavrentiev Ave., Novosibirsk, 630090, Russia.

出版信息

Dalton Trans. 2014 Feb 21;43(7):2953-60. doi: 10.1039/c3dt53040j.

Abstract

A series of mononuclear heteroleptic copper(I) halide complexes, [CuL(PPh3)X] (X = Cl, Br, I), based on 4-(3,5-diphenyl-1H-pyrazol-1-yl)-6-(piperidin-1-yl)pyrimidine (L) and triphenylphosphine, have been synthesized by reaction between CuX (X = Cl, Br, I), L and PPh3 in a molar ratio of 1/1/1 in MeCN solutions. The copper atom, showing the distorted tetrahedral environment, is bound by the N,N-chelating ligand L, triphenylphosphine and a halide ion. The complexes [CuL(PPh3)Cl] and [CuL(PPh3)Br] are isostructural. In CH2Cl2 solutions, L and the complexes [CuL(PPh3)X] (X = Cl, Br, I) display a luminescence band with λ(max) = 377 nm and a lifetime of 1.9 ns (ligand-based luminescence (LL*)). However, the complex [CuL(PPh3)I] has an additional weak luminescence band with λ(max) = 681 nm and a lifetime of 96 ns of (3)MLCT origin. In the solid state, L shows the splitting of the luminescence band to λ(max) = 365 and 384 nm and a slight increase of the lifetime to 2.66 ns. Solid samples of the complexes [CuL(PPh3)X] demonstrate (3)MLCT luminescence bands at 620 nm (X = Cl), 605 nm (X = Br) and 559 nm (X = I) with lifetimes in the range 3.6-11.2 μs, whereas the LL* band (377 nm) is absent. Quantum yields and rate constants of radiative and nonradiative processes were determined in CH2Cl2 solutions and in the solid state for all complexes. The luminescence quantum yield and lifetimes for the solid samples increase in the order [CuL(PPh3)Cl] < [CuL(PPh3)Br] < [CuL(PPh3)I]. This is due to the increase of radiative decay and simultaneous suppression of nonradiative decay. The complex [CuL(PPh3)I] shows a high quantum yield of 29.4% and an excited state lifetime of 11.2 μs.

摘要

一系列单核杂化铜(I)卤化物配合物,[CuL(PPh3)X](X = Cl,Br,I),基于 4-(3,5-二苯基-1H-吡唑-1-基)-6-(哌啶-1-基)嘧啶(L)和三苯基膦,通过 CuX(X = Cl,Br,I),L 和 PPh3 在 MeCN 溶液中的摩尔比为 1/1/1 反应合成。铜原子显示出扭曲的四面体形环境,由 N,N-螯合配体 L、三苯基膦和卤化物离子结合。配合物[CuL(PPh3)Cl]和[CuL(PPh3)Br]是同构的。在 CH2Cl2 溶液中,L 和配合物[CuL(PPh3)X](X = Cl,Br,I)显示出 λ(max)= 377nm 的发光带和 1.9ns 的寿命(配体基发光(LL*))。然而,配合物[CuL(PPh3)I]具有另外的较弱发光带,λ(max)= 681nm 和 96ns 的(3)MLCT 起源寿命。在固态中,L 显示出发光带的分裂为 λ(max)= 365nm 和 384nm,并且寿命略有增加至 2.66ns。配合物[CuL(PPh3)X]的固态样品在 620nm(X = Cl)、605nm(X = Br)和 559nm(X = I)处显示(3)MLCT 发光带,寿命在 3.6-11.2μs 范围内,而 LL*带(377nm)不存在。在 CH2Cl2 溶液中和固态下,确定了所有配合物的辐射和非辐射过程的量子产率和速率常数。固态样品的发光量子产率和寿命按[CuL(PPh3)Cl] < [CuL(PPh3)Br] < [CuL(PPh3)I]的顺序增加。这是由于辐射衰减的增加和同时抑制非辐射衰减。配合物[CuL(PPh3)I]表现出 29.4%的高量子产率和 11.2μs 的激发态寿命。

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