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钌(II) 多吡啶配合物中配体局域激发态的光物理性质:电子给体-受体配体的综合效应。

Photophysical properties of ligand localized excited state in ruthenium(II) polypyridyl complexes: a combined effect of electron donor-acceptor ligand.

机构信息

Radiation and Photo Chemistry Division, Bhabha Atomic Research Center, Mumbai, India.

出版信息

Dalton Trans. 2011 Oct 14;40(38):9765-73. doi: 10.1039/c1dt10266d. Epub 2011 Aug 25.

Abstract

We have synthesized ruthenium(II) polypyridyl complexes (1) Ru(II)(bpy)(2)(L(1)), (2) Ru(II)(bpy)(2)(L(2)) and (3) Ru(II)(bpy)(L(1))(L(2)), where bpy = 2,2'-bipyridyl, L(1) = 4-[2-(4'-methyl-2,2'-bipyridinyl-4-yl)vinyl]benzene-1,2-diol) and L(2) = 4-(N,N-dimethylamino-phenyl)-(2,2'-bipyridine) and investigated the intra-ligand charge transfer (ILCT) and ligand-ligand charge transfer (LLCT) states by optical absorption and emission studies. Our studies show that the presence of electron donating -NMe(2) functionality in L(2) and electron withdrawing catechol fragment in L(1) ligands of complex 3 introduces low energy LLCT excited states to aboriginal MLCT states. The superimposed LLCT and MLCT state produces redshift and broadening in the optical absorption spectra of complex 3 in comparison to complexes 1 and 2. The emission quantum yield of complex 3 is observed to be extremely low in comparison to that of complex 1 and 2 at room temperature. This is attributed to quenching of the (3)MLCT state by the low-emissive (3)LLCT state. The emission due to ligand localized CT state (ILCT and LLCT) of complexes 2 and 3 is revealed at 77 K in the form of a new luminescence band which appeared in the 670-760 nm region. The LLCT excited state of complex 3 is populated either via direct photoexcitation in the LLCT absorption band (350-700 nm) or through internal conversion from the photoexcited (3)MLCT (400-600 nm) states. The internal conversion rate is determined by quenching of the (3)MLCT state in a time resolved emission study. The internal conversion to LLCT and ILCT excited states are observed to be as fast as ∼200 ps and ∼700 ps for complexes 3 and 2, respectively. The present study illustrates the photophysical property of the ligand localized excited state of newly synthesized heteroleptic ruthenium(II) polypyridyl complexes.

摘要

我们合成了钌(II)多吡啶配合物(1)Ru(II)(bpy)(2)(L(1))、(2)Ru(II)(bpy)(2)(L(2))和(3)Ru(II)(bpy)(L(1))(L(2)),其中 bpy = 2,2'-联吡啶,L(1)= 4-[2-(4'-甲基-2,2'-联吡啶基-4-基)乙烯基]苯-1,2-二醇)和 L(2)= 4-(N,N-二甲氨基-苯基)-(2,2'-联吡啶),并通过光学吸收和发射研究研究了分子内电荷转移(ILCT)和配体-配体电荷转移(LLCT)状态。我们的研究表明,配合物 3 中 L(2)中的供电子-NMe(2)官能团和 L(1)中的电子受主邻苯二酚片段的存在将低能 LLCT 激发态引入到原始 MLCT 态。与配合物 1 和 2 相比,配合物 3 中 LLCT 和 MLCT 状态的叠加导致光学吸收光谱的红移和展宽。与配合物 1 和 2 相比,在室温下,配合物 3 的发射量子产率观察到非常低。这归因于低发光(3)LLCT 态对(3)MLCT 态的猝灭。在 77 K 下,通过配体局部 CT 态(ILCT 和 LLCT)的发射在 670-760 nm 区域以新的发光带的形式显现出来。配合物 3 的 LLCT 激发态通过直接在 LLCT 吸收带(350-700 nm)中光激发或通过从光激发(3)MLCT(400-600 nm)态的内部转换来填充。内部转换速率通过在时间分辨发射研究中猝灭(3)MLCT 态来确定。对于配合物 3 和 2,内部转换到 LLCT 和 ILCT 激发态的速度分别快至约 200 ps 和约 700 ps。本研究说明了新合成的异核钌(II)多吡啶配合物配体局域激发态的光物理性质。

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