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基于杂双齿联吡啶-三联吡啶桥联的钌(II)和铑(III)同、异双金属配合物的光致电子和能量转移以及 pH 值对光物理性质的调制。

Photoinduced electron and energy transfer and pH-induced modulation of the photophysical properties in homo- and heterobimetallic complexes of ruthenium(II) and rhodium(III) based on a heteroditopic phenanthroline-terpyridine bridge.

机构信息

Inorganic Chemistry Section, Department of Chemistry, Jadavpur University, Kolkata 700032, India.

出版信息

Inorg Chem. 2013 Jul 15;52(14):7933-46. doi: 10.1021/ic400449c. Epub 2013 Jun 25.

Abstract

Homo- and heterobimetallic complexes of compositions (bpy)2Ru(II)(phen-Hbzim-tpy)Ru(II)(tpy/tpy-PhCH3/H2pbbzim) and (bpy)2Ru(II)(phen-Hbzim-tpy)Rh(III)(tpy-PhCH3/H2pbbzim), where phen-Hbzim-tpy = 2-[4-(2,6-dipyridin-2-ylpyridin-4-yl)phenyl]-1H-imidazole[4,5-f][1,10]phenanthroline, bpy = 2,2'-bipyridine, tpy = 2,2':6',2"-terpyridine, tpy-PhCH3 = 4'-(4-methylphenyl)-2,2':6',2"-terpyridine, and H2pbbzim = 2,6-bis(benzimidazol-2-yl)pyridine, have been synthesized and characterized by elemental analyses, electrospray ionization mass spectrometry, and (1)H NMR spectroscopy. The absorption spectra, redox behavior, and luminescence properties of these bimetallic complexes have been thoroughly investigated and compared with those of monometallic (bpy)2Ru(II)(phen-Hbzim-tpy) and (tpy-PhCH3)Rh(III)(tpy-Hbzim-phen) model compounds. The electrochemistry of the complexes shows a reversible Ru(II/III) oxidation in the anodic region and an irreversible Rh(III/I) reduction and several ligand-based reductions in the cathodic region. Steady-state and time-resolved luminescence data at room temperature show that an efficient intramolecular electronic energy transfer from the metal-to-ligand charge-transfer (MLCT) excited state of the [(bpy)2Ru(II)(phen-Hbzim-tpy)] chromophore to the MLCT state of the tpy-containing chromophore [(phen-Hbzim-tpy)Ru(II)(tpy/tpy-PhCH3/H2pbbzim)] occurs in all three unsymmetrical homobimetallic complexes. On the other hand, for both heterometallic dyads, an efficient intramolecular photoinduced electron transfer from the excited ruthenium moiety to the rhodium-based unit takes place. The rate constants for the energy- and electron-transfer processes have been determined by time-resolved emission spectroscopy. The influence of the pH on the absorption, steady-state, and time-resolved emission properties of complexes has been thoroughly investigated. The absorption titration data were used to determine the ground-state pK values, whereas the luminescence data were utilized for determination of the excited-state acid dissociation constants. In effect, deprotonation of the azole NH moieties of the complexes leads to a substantial lowering of the MLCT absorption and emission band energies.

摘要

[(bpy)2Ru(II)(phen-Hbzim-tpy)Ru(II)(tpy/tpy-PhCH3/H2pbbzim)]4+ 和 [(bpy)2Ru(II)(phen-Hbzim-tpy)Rh(III)(tpy-PhCH3/H2pbbzim)]5+ 的同、异双核配合物的合成与表征采用元素分析、电喷雾质谱和 (1)H NMR 光谱。这些双核配合物的吸收光谱、氧化还原行为和发光性质已被深入研究,并与单核 (bpy)2Ru(II)(phen-Hbzim-tpy)(tpy-PhCH3)Rh(III)(tpy-Hbzim-phen) 模型化合物进行了比较。配合物的电化学在阳极区显示出可逆的 Ru(II/III) 氧化,在阴极区显示出不可逆的 Rh(III/I) 还原和几个配体还原。室温下的稳态和时间分辨荧光数据表明,[(bpy)2Ru(II)(phen-Hbzim-tpy)]发色团的金属到配体电荷转移 (MLCT) 激发态与含 tpy 的发色团 [(phen-Hbzim-tpy)Ru(II)(tpy/tpy-PhCH3/H2pbbzim)] 的 MLCT 态之间发生有效的分子内电子能量转移。在所有三个非对称同双核配合物中都发生了这种情况。另一方面,对于两种异双核二聚体,从激发的钌部分到基于铑的单元发生有效的分子内光诱导电子转移。通过时间分辨发射光谱确定了能量和电子转移过程的速率常数。彻底研究了配合物吸收、稳态和时间分辨发射性质随 pH 值的变化。使用吸收滴定数据确定了基态 pK 值,而使用荧光数据确定了激发态酸离解常数。实际上,配合物中唑 NH 部分的去质子化会大大降低 MLCT 吸收和发射带的能量。

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