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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Conformationally gated photoinduced processes within photosensitizer-acceptor dyads based on osmium(II) complexes with triarylpyridinio-functionalized terpyridyl ligands: Insights from theoretical analysis
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Conformationally gated photoinduced processes within photosensitizer-acceptor dyads based on osmium(II) complexes with triarylpyridinio-functionalized terpyridyl ligands: Insights from theoretical analysis

机译:基于(II)与三芳基吡啶基官能化的吡啶基配体的光敏剂-受体二元组中的构象门控光诱导过程:理论分析的见解

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A theoretical analysis, based on density functional theory, has been carried out to study photoinduced processes within a recently experimentally characterized (Laine, P. P.; Bedioui, F.; Loiseau, F.; Chiorboli, C.; Campagna, S. J. Am. Chem. Soc. 2006, http://dx.doi.org/10.1021/ja058357w.) series of Os(II) bis-tpy complexes (tpy = 2,2': 6'2"-terpyridine) functionalized by 2,4,6-triarylpyridinium groups, TP+. These dyad systems, designed to produce a charge-separated state (CSS) upon light excitation, are made up of a photosensitizer unit ( P, the metal complex) and a tunable acceptor unit (A, the TP+). A full ab initio characterization of the electronic and structural properties of the lowest-lying triplet excited states, as well as of the CSS, allowed for a complete rationalization of the photoinduced processes taking place within the dyads. Among salient insights, theory allowed (i) substantiation of the inner P structural planarization as the relaxation mode of the MLCT states, (ii) confirmation of the existence of a ligand-centered triplet excited state ((LC)-L-3) shown to essentially involve the nitro substituent of A (TP+-NO2) and lying very close in energy to the P-centered (MLCT)-M-3 state, and (iii) a demonstration that the energy of the (LC)-L-3 level is independent of intercomponent tilt angle (theta(1)). On this basis, the occurrence of a reversible electronic energy transfer between the (MLCT)-M-3 and the (LC)-L-3 states could be substantiated and shown to depend on the intramolecular conformation represented by theta(1), which actually governs their electronic coupling (essentially via the degree of intercomponent conjugation). These computational issues were checked against experimental data already available and the results of a specifically undertaken photophysical study. Finally, CSS formation has been confirmed by studying the spin density patterns of reduced nitro-derivatized dyads. Taken together, these findings accurately account for the different excited-state behaviors of the dyads as a function of the level of structural restriction of their intercomponent conformation (and related amplitude for torsional fluctuations), thus providing theoretical evidence of conformationally gated photoinduced electron- and energy-transfer processes.
机译:已经进行了基于密度泛函理论的理论分析,以研究最近实验表征的光诱导过程(Laine,PP; Bedioui,F .; Loiseau,F .; Chiorboli,C .; Campagna,SJ Am.Chem。 Soc。2006,http://dx.doi.org/10.1021/ja058357w。)系列的Os(II)bis-tpy配合物(tpy = 2,2':6'2“-叔吡啶)被2,4功能化, 6-三芳基吡啶鎓基团TP +这些二元体系设计成在光激发时产生电荷分离态(CSS),由光敏剂单元(P,金属配合物)和可调受体单元(A,TP +)组成)。从头开始,对最低的三重态激发态以及CSS的电子和结构性质进行了全面的表征,从而使在二重体中发生的光诱导过程得以完全合理化。 (i)将内部P结构平面化证实为MLCT状态的弛豫模式,(ii)确认存在一个以配体为中心的三重态激发态((LC)-L-3),该态基本上涉及A(TP + -NO2)的硝基取代基,并且能量与P中心(MLCT)-非常接近M-3状态,以及(iii)证明(LC)-L-3能级的能量与分量间倾斜角(theta(1))无关。在此基础上,(MLCT)-M-3和(LC)-L-3状态之间可逆电子能量转移的发生可以得到证实,并依赖于由theta(1)表示的分子内构象。实际上控制着它们的电子耦合(基本上通过组件间共轭的程度)。将这些计算问题与已有的实验数据和专门进行的光物理研究的结果进行了比较。最后,通过研究还原的硝基衍生二联体的自旋密度模式,已经证实了CSS的形成。综上所述,这些发现准确地说明了二元组的不同激发态行为,取决于其组分间构象的结构限制水平(以及扭转波动的相关幅度),从而为构象门控的光生电子和电子提供了理论证据。能量转移过程。

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