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Real-time observation of the charge transfer to solvent dynamics

机译:实时观察电荷转移至溶剂动力学

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Intermolecular electron-transfer reactions have a crucial role in biology, solution chemistry and electrochemistry. The first step of such reactions is the expulsion of the electron to the solvent, whose mechanism is determined by the structure and dynamical response of the latter. Here we visualize the electron transfer to water using ultrafast fluorescence spectroscopy with polychromatic detection from the ultraviolet to the visible region, upon photo-excitation of the so-called charge transfer to solvent states of aqueous iodide. The initial emission is short lived (~60?fs) and it relaxes to a broad distribution of lower-energy charge transfer to solvent states upon rearrangement of the solvent cage. This distribution reflects the inhomogeneous character of the solvent cage around iodide. Electron ejection occurs from the relaxed charge transfer to solvent states with lifetimes of 100–400?fs that increase with decreasing emission energy.
机译:分子间电子转移反应在生物学,溶液化学和电化学中具有至关重要的作用。这种反应的第一步是将电子驱逐到溶剂中,其机理由溶剂的结构和动力学响应决定。在这里,通过所谓的电荷转移到碘化水溶液的溶剂态进行光激发,我们使用超快荧光光谱技术通过从紫外到可见光区域的多色检测,可视化了电子向水的转移。初始发射的寿命很短(〜60?fs),并且在重新排列溶剂笼时,其释放到较低能量电荷转移到溶剂状态的广泛分布。这种分布反映了碘化物周围溶剂笼的不均匀特性。电子从松弛的电荷转移到溶剂态而发生,其寿命为100–400?fs,随着发射能量的减少而增加。

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