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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Calculated optoelectronic properties of ruthenium tris-bipyridine dyes containing oligophenyleneethynylene rigid rod linkers in different chemical environments
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Calculated optoelectronic properties of ruthenium tris-bipyridine dyes containing oligophenyleneethynylene rigid rod linkers in different chemical environments

机译:含低聚亚苯基亚乙炔基刚性杆连接体的钌三联吡啶染料的光电性能在不同化学环境中的计算值

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摘要

Ruthenium tris-bipyridine dyes containing oligophenyleneethynylene (OPE) rigid rod linker groups ([Ru(bpy)(3)](2+), [Ru(bpy)(2)bpy-E-Ipa](2+), [Ru(bpy)(2)bpy-E-Ph-E-Ipa](2+), and [Ru(bpy)(2)bpy-E-Bco-E-Ipa](2+), where bpy = 2,2'-bipyridine, E = ethynylene, Ph = p-phenylene, Bco = bicyclo[2.2.2]octylene, and Ipa = isophthalic acid) have been investigated using DFT and TD-DFT calculations to elucidate the influence of the rigid rod on their optoelectronic properties. Experimentally observed differences in the optical absorption for the different complexes are discussed on the basis of TD-DFT simulated absorption spectra. A comparison of the calculated optoelectronic properties of [Ru(bpy)(2)bpy-E-Ph-E-Ipa](2+) in different chemical environments, that is, in different solvents and with or without counter ions, suggests that both the absorption spectra and the redox properties of the dyes with OPE rods are sensitive to the environment. The calculations show that spurious low-energy charge-transfer excitations present in the TD-DFT calculations of the extended systems in vacuum are removed when the environment is included in the calculations.
机译:含有低级亚苯基亚乙炔基(OPE)刚性杆连接基团([Ru(bpy)(3)](2 +),[Ru(bpy)(2)bpy-E-Ipa](2 +),[Ru (bpy)(2)bpy-E-Ph-E-Ipa](2+)和[Ru(bpy)(2)bpy-E-Bco-E-Ipa](2+),其中bpy = 2,已使用DFT和TD-DFT计算方法研究了2'-联吡啶,E =亚乙炔基,Ph =对亚苯基,Bco =双环[2.2.2]辛烯和Ipa =间苯二甲酸),以阐明刚性棒对它们的光电特性。在TD-DFT模拟吸收光谱的基础上,讨论了不同配合物在光吸收上的实验观察差异。比较[Ru(bpy)(2)bpy-E-Ph-E-Ipa](2+)在不同化学环境中(即在不同溶剂中,有或没有抗衡离子)的计算光电性能,这表明:带有OPE棒的染料的吸收光谱和氧化还原特性均对环境敏感。计算表明,当在计算中包括环境时,可以消除真空中扩展系统的TD-DFT计算中存在的虚假的低能量电荷转移激励。

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