光激发
溶剂化
放射分析
溶剂化电子
电子
化学
飞秒
化学物理
原子物理学
超短脉冲
电子转移
清除
超快激光光谱学
激发
光化学
光谱学
离子
激进的
激发态
激光器
物理
抗氧化剂
有机化学
生物化学
量子力学
光学
作者
Yoichi Yamamoto,Toshinori Suzuki
标识
DOI:10.1021/acs.jpclett.0c01468
摘要
The ultrafast formation, solvation, and geminate recombination of hydrated electrons upon vacuum ultraviolet photoexcitation of liquid water and the static and dynamic scavenging by NO3– are investigated using femtosecond time-resolved photoelectron spectroscopy. The solvation time constant for excess electrons is typical of that for liquid water but increases slightly with increasing excitation energy. The electron survival probability for geminate recombination is found to be much lower than the literature values owing to previously unobserved ultrafast geminate recombination in a period of 5 ps. NO3– induces the ultrafast (static) scavenging of photoexcited electronic states of liquid water and the dynamic scavenging of detached electrons with a reaction rate that is dependent on the excitation energy. The formation of hydrated electrons at 7.7 eV is ascribed to a H-atom-transfer process, but it is plausible that additional formation channels open at higher energies.
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