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烷氧基取代基对 4,6-二苯基-2,2'-联吡啶配体对环金属化铂(II)配合物光物理性质的影响:低激发态中配体内电荷转移性质的混合。

Influence of alkoxyl substituent on 4,6-diphenyl-2,2'-bipyridine ligand on photophysics of cyclometalated platinum(II) complexes: admixing intraligand charge transfer character in low-lying excited states.

机构信息

Department of Chemistry and Molecular Biology, North Dakota State University, Fargo, North Dakota 58105-5516, USA.

出版信息

Inorg Chem. 2009 Mar 16;48(6):2407-19. doi: 10.1021/ic801589q.

Abstract

A series of platinum 4,6-diphenyl-2,2'-bipyridine complexes (6-10) with alkoxyl substituent on the 6-phenyl ring have been synthesized and characterized. The influence of the alkoxyl substituent on the nature of the low-lying excited states, and thus the photophysical properties, have been systematically investigated spectroscopically and theoretically. Complexes 6-10 exhibit a broad low-energy charge-transfer absorption band from 400 to 500 nm, which shows weak negative solvatochromic effect. They all emit at about 590 nm in fluid solutions at room temperature, with the emission energy essentially independent of the nature of the monodentate ligand and the polarity of solvent. The excited-state lifetimes of 6 and 7 are much longer (approximately 460-570 ns) than those of their corresponding "alkoxyl free" analogues 12 and 13 (approximately 40-100 ns) in CH(3)CN. Additionally, the emission quantum yields of 7-9 in CH(2)Cl(2) are quite high (0.15-0.21). Spectroscopic studies and Time-Dependent Density Functional Theory (TDDFT) calculations indicate that these unique photophysical properties are induced by the electron-donating ability of the alkoxyl substituent, which causes a mixture of the intraligand charge transfer (ILCT) with the metal-to-ligand charge transfer (MLCT)/ligand-to-ligand charge transfer (LLCT) in their low-lying excited states. Complexes 6-10 exhibit broad triplet transient difference absorption in the near-UV to the near-IR region, where reverse saturable absorption (RSA) could occur. Nonlinear absorption experiments at 532 nm for nanosecond laser pulses demonstrate that 6-9 are strong reverse saturable absorbers, while 10 exhibits weak RSA because of its larger ground-state absorption cross-section and its low triplet excited-state quantum yield.

摘要

一系列带有烷氧基取代基的铂 4,6-二苯基-2,2'-联吡啶配合物(6-10)已被合成并进行了表征。通过光谱和理论研究系统地研究了烷氧基取代基对低能激发态性质的影响,以及由此对光物理性质的影响。配合物 6-10 在 400 到 500nm 之间表现出宽的低能量电荷转移吸收带,显示出较弱的负溶剂化效应。在室温下的流体溶液中,它们都在大约 590nm 处发射,发射能量基本上与单齿配体的性质和溶剂的极性无关。在 CH(3)CN 中,6 和 7 的激发态寿命(约 460-570ns)比它们相应的“无烷氧基”类似物 12 和 13(约 40-100ns)长得多。此外,7-9 在 CH(2)Cl(2)中的发射量子产率相当高(0.15-0.21)。光谱研究和时间相关密度泛函理论(TDDFT)计算表明,这些独特的光物理性质是由烷氧基取代基的供电子能力引起的,这导致在其低能激发态中存在配体内电荷转移(ILCT)与金属-配体电荷转移(MLCT)/配体-配体电荷转移(LLCT)的混合物。配合物 6-10 在近紫外到近红外区域表现出宽的三重态瞬态差吸收,可能发生反向饱和吸收(RSA)。纳秒激光脉冲的非线性吸收实验在 532nm 处证明 6-9 是强的反向饱和吸收体,而 10 由于其较大的基态吸收截面和较低的三重激发态量子产率,表现出较弱的 RSA。

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