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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >X-ray absorption spectroscopy of ground and excited rhenium-carbonyl- diimine complexes: Evidence for a two-center electron transfer
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X-ray absorption spectroscopy of ground and excited rhenium-carbonyl- diimine complexes: Evidence for a two-center electron transfer

机译:地面和激发的-羰基-二亚胺配合物的X射线吸收光谱:两中心电子转移的证据

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摘要

Steady-state and picosecond time-resolved X-ray absorption spectroscopy is used to study the ground and lowest triplet states of [ReX(CO) _3(bpy)]~(n+), X = Etpy (n = 1), Cl, or Br (n = 0). We demonstrate that the transient spectra at both the Re L_3-and Br K-edges show the emergence of a pre-edge feature, absent in the ground-state spectrum, which is associated with the electron hole created in the highest occupied molecular orbital following photoexcitation. Importantly, these features have the same dynamics, confirming previous predictions that the low-lying excited states of these complexes involve a two-center charge transfer from both the Re and the ligand, X. We also demonstrate that the DFT optimized ground and excited structures allow us to reproduce the experimental XANES and EXAFS spectra. The ground-state structural refinement shows that the Br atom contributes very little to the latter, whereas the Re-C-O scattering paths are dominant due to the so-called focusing effect. For the excited-state spectrum, the Re-X bond undergoes one of the largest changes but still remains a weak contribution to the photoinduced changes of the EXAFS spectrum.
机译:稳态和皮秒时间分辨X射线吸收光谱用于研究[ReX(CO)_3(bpy)]〜(n +),X = Etpy(n = 1),Cl,或Br(n = 0)。我们证明,在Re L_3和Br K边缘的瞬态光谱都显示了基态光谱中不存在的前边缘特征的出现,该特征与在最高占据分子轨道以下产生的电子空穴有关光激发。重要的是,这些特征具有相同的动力学,证实了先前的预测,即这些配合物的低激发态涉及Re和配体X的两个中心电荷转移。我们还证明了DFT优化了基态和激发结构使我们能够重现实验XANES和EXAFS光谱。基态结构的改进表明,Br原子对后者的贡献很小,而Re-C-O散射路径由于所谓的聚焦效应而占主导地位。对于激发态光谱,Re-X键经历了最大的变化之一,但仍然对EXAFS光谱的光致变化贡献不大。

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