溶剂化电子
光激发
电子
化学物理
电子转移
激发
化学
光化学
紫外线
原子物理学
工作(物理)
极端紫外线
材料科学
水溶液
放射分析
光电子学
激发态
物理
激光器
物理化学
光学
热力学
量子力学
作者
Sebastian Hartweg,J. V. Barnes,Bruce L. Yoder,Gustavo A. Garcia,Laurent Nahon,Evangelos Miliordos,Ruth Signorell
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2023-06-16
卷期号:380 (6650): 1161-1165
被引量:3
标识
DOI:10.1126/science.adh0184
摘要
Low-energy electrons dissolved in liquid ammonia or aqueous media are powerful reducing agents that promote challenging reduction reactions but can also cause radiation damage to biological tissue. Knowledge of the underlying mechanistic processes remains incomplete, particularly with respect to the details and energetics of the electron transfer steps. In this work, we show how ultraviolet (UV) photoexcitation of metal-ammonia clusters could be used to generate tunable low-energy electrons in situ. Specifically, we identified UV light-induced generation of spin-paired solvated dielectrons and their subsequent relaxation by an unconventional electron transfer-mediated decay as an efficient, low-energy electron source. The process is robust and straightforward to induce with the prospect of improving our understanding of radiation damage and fostering mechanistic studies of solvated electron reduction reactions.
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