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On the interplay of solvent and conformational effects in simulated excited-state dynamics of a copper phenanthroline photosensitizer

机译:关于铜菲利琳光敏剂模拟激发状态动态的溶剂和构象效应的相互作用

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Copper(i) bis-phenanthroline complexes represent Earth-abundant alternatives to ruthenium-based sensitizers for solar energy conversion and photocatalysis. Improved understanding of the solvent-mediated excited-state structural dynamics can help optimize their photoconversion efficiency. Through direct dynamics simulations in acetonitrile and excited-state minimum energy path calculations in vacuum, we uncover the mechanism of the photoinduced flattening motion of the prototypical system [Cu(dmphen)(2)](+) (dmphen = 2,9-dimethyl-1,10-phenanthroline). We find that the ligand distortion is a two-step process in acetonitrile. The fast component (similar to 110 fs) is due to spontaneous pseudo Jahn-Teller instability and is largely solvent independent, while the slow component (similar to 1.2 ps) arises from the mutual interplay between solvent molecules closely approaching the metal center and rotation of the methyl substituents. These results shed new light on the influence of a donor solvent such as acetonitrile and methyl substituents on the flattening dynamics of [Cu(dmphen)(2)](+).
机译:铜(I)双菲咯啉配合物代表钌基敏感剂的地面替代品,用于太阳能转换和光催化。改善了对溶剂介导的兴奋状态结构动力学的理解,可以帮助优化它们的光电转换效率。通过在真空中的乙腈和兴奋状态最小能量路径计算中的直接动力模拟,我们发现了原型系统的光导扁平运动的机制[Cu(Dmphen)(2)](+)(Dmphen = 2,9-二甲基-1,10-菲咯啉)。我们发现配体畸变是乙腈的两步过程。快速组件(类似于110 FS)是由于自发的伪jahn-keerer不稳定性并且在很大程度上是溶剂,而缓慢的组分(类似于1.2 ps),从密切接近金属中心和旋转之间的溶剂分子之间的相互相互作用产生甲基取代基。这些结果对供体溶剂如乙腈和甲基取代基的影响进行了新的光,[Cu(Dmphen)(2)](+)的扁平动力学。

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