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Partially Hydrated Electrons at the Air/Water Interface Observed by UV-Excited Time-Resolved Heterodyne-Detected Vibrational Sum Frequency Generation Spectroscopy

机译:通过紫外激发时间分辨的外差检测振动和频率生成光谱观察到空气/水界面的部分水合电子

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摘要

Hydrated electrons are the most fundamental anion species, consisting only of electrons and surrounding water molecules. Although hydrated electrons have been extensively studied in the bulk aqueous solutions, even their existence is still controversial at the water surface. Here, we report the observation and characterization of hydrated electrons at the air/water interface using new time-resolved interface-selective nonlinear vibrational spectroscopy. With the generation of electrons at the air/water interface by ultraviolet photoirradiation, we observed the appearance of a strong transient band in the OH stretch region by heterodyne-detected vibrational sum-frequency generation. Through the comparison with the time-resolved spectra at the air/indole solution interface, the transient band was assigned to the vibration of water molecules that solvate electrons at the interface. The analysis of the frequency and decay of the observed transient band indicated that the electrons are only partially hydrated at the water surface, and that they escape into the bulk within 100 ps.
机译:水合电子是最基本的阴离子种类,仅由电子和周围的水分子组成。尽管在大量水溶液中已对水合电子进行了广泛研究,但即使在水表面存在水合电子,也仍然存在争议。在这里,我们报告使用新的时间分辨界面选择性非线性振动光谱法在空气/水界面处观察和表征水合电子。通过紫外线光辐射在空气/水界面处产生电子,我们观察到外差检测到的振动和频产生在OH拉伸区中出现了一个很强的过渡带。通过与空气/吲哚溶液界面处的时间分辨谱进行比较,将瞬态谱带分配给水分子的振动,水分子在界面处溶解了电子。对观察到的瞬态谱带的频率和衰减的分析表明,电子在水表面仅被部分水化,并且它们在100 ps内逃逸到主体中。

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