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首页> 外文期刊>Angewandte Chemie >Ultrafast Excimer Formation and Solvent Controlled Symmetry Breaking Charge Separation in the Excitonically Coupled Subphthalocyanine Dimer
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Ultrafast Excimer Formation and Solvent Controlled Symmetry Breaking Charge Separation in the Excitonically Coupled Subphthalocyanine Dimer

机译:超快准分子形成和溶剂控制对称断裂电荷分离在激源偶联的亚酞菁二聚体中

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摘要

Knowledge of the factors controlling excited state dynamics in excitonically coupled dimers and higher aggregates is critical for understanding natural and artificial solar energy conversion. In this work, we report ultrafast solvent polarity dependent excited state dynamics of the structurally well-defined subphthalocyanine dimer, mu-OSubPc(2). Stationary electronic spectra demonstrate strong exciton coupling in mu-OSubPc(2). Femtosecond transient absorption measurements reveal ultrafast excimer formation from the initially excited exciton, mediated by intramolecular structural evolution. In polar solvents the excimer state decays directly through symmetry breaking charge transfer to form a charge separated state. Charge separation occurs under control of solvent orientational relaxation.
机译:了解激子耦合二聚体和更高聚集体中控制激发态动力学的因素对于理解自然和人工太阳能转换至关重要。在这项工作中,我们报道了结构明确的亚酞菁二聚体mu-OSubPc(2)的超快溶剂极性依赖激发态动力学。稳态电子光谱表明mu-OSubPc(2)中存在强烈的激子耦合。飞秒瞬态吸收测量揭示了最初激发的激子通过分子内结构演化介导的超快准分子形成。在极性溶剂中,准分子态通过对称破缺电荷转移直接衰变,形成电荷分离态。电荷分离是在溶剂取向弛豫的控制下发生的。

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