双齿吡啶-介离子羰基配体对钌配合物的影响:结构、光谱、电化学、光物理和理论研究

IF 3.3 Q2 CHEMISTRY, MULTIDISCIPLINARY
Tobias Bens, Jasmin A. Kübler, Robert R. M. Walter, Julia Beerhues, Oliver S. Wenger and Biprajit Sarkar*, 
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引用次数: 0

摘要

本文提出了分离一系列Ru(II)与1,2,3-三唑-5-亚基型吡啶基中离子卡宾配体(MIC)的新合成策略,其中原型[Ru(bpy)3]2+的bpy配体(bpy=2,2′-联吡啶)已相继被一个、两个或三个吡啶基MIC配体取代。通过核磁共振波谱和单晶X射线衍射分析,分离并研究了三种新的配合物。如电子顺磁共振光谱电化学(EPR-SEC)所示,在循环伏安法中,一个MIC单元的加入将金属中心氧化的电势从约160 mV转移到更大的阴极电势,证明了吡啶基MIC配体非凡的σ-供体能力,而π-受体能力由bpy配体主导。与公认的[Ru(bpy)3]2+配合物相比,用吡啶基MIC配体取代所有bpy配体导致配体中心还原的阳极位移390mV。此外,考虑到Ru(II)配合物中引入的吡啶基MIC配体的总数,UV/vis/NIR-SEC与理论计算相结合,对各自氧化还原态的电子结构提供了详细的见解。通过时间分辨吸收和发射光谱测定了发光量子产率和寿命。对激发态氧化还原电位的估计最终表明,吡啶基MIC配体可以将分离的复合物的光氧化还原活性调节为更强的光还原剂。这些观察结果可以为基于MIC的光催化剂和光敏剂的设计提供新的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Impact of Bidentate Pyridyl-Mesoionic Carbene Ligands: Structural, (Spectro)Electrochemical, Photophysical, and Theoretical Investigations on Ruthenium(II) Complexes

Impact of Bidentate Pyridyl-Mesoionic Carbene Ligands: Structural, (Spectro)Electrochemical, Photophysical, and Theoretical Investigations on Ruthenium(II) Complexes

We present here new synthetic strategies for the isolation of a series of Ru(II) complexes with pyridyl-mesoionic carbene ligands (MIC) of the 1,2,3-triazole-5-ylidene type, in which the bpy ligands (bpy = 2,2′-bipyridine) of the archetypical [Ru(bpy)3]2+ have been successively replaced by one, two, or three pyridyl-MIC ligands. Three new complexes have been isolated and investigated via NMR spectroscopy and single-crystal X-ray diffraction analysis. The incorporation of one MIC unit shifts the potential of the metal-centered oxidation about 160 mV to more cathodic potential in cyclic voltammetry, demonstrating the extraordinary σ-donor ability of the pyridyl-MIC ligand, while the π-acceptor capacities are dominated by the bpy ligand, as indicated by electron paramagnetic resonance spectroelectrochemistry (EPR-SEC). The replacement of all bpy ligands by the pyridyl-MIC ligand results in an anoidic shift of the ligand-centered reduction by 390 mV compared to the well-established [Ru(bpy)3]2+ complex. In addition, UV/vis/NIR-SEC in combination with theoretical calculations provided detailed insights into the electronic structures of the respective redox states, taking into account the total number of pyridyl-MIC ligands incorporated in the Ru(II) complexes. The luminescence quantum yield and lifetimes were determined by time-resolved absorption and emission spectroscopy. An estimation of the excited state redox potentials conclusively showed that the pyridyl-MIC ligand can tune the photoredox activity of the isolated complexes to stronger photoreductants. These observations can provide new strategies for the design of photocatalysts and photosensitizers based on MICs.

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来源期刊
ACS Organic & Inorganic Au
ACS Organic & Inorganic Au 有机化学、无机化学-
CiteScore
4.10
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0.00%
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期刊介绍: ACS Organic & Inorganic Au is an open access journal that publishes original experimental and theoretical/computational studies on organic organometallic inorganic crystal growth and engineering and organic process chemistry. Short letters comprehensive articles reviews and perspectives are welcome on topics that include:Organic chemistry Organometallic chemistry Inorganic Chemistry and Organic Process Chemistry.
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