脱羧
丙酮酸
化学
光化学
光激发
离子
大气化学
分解
光解
共轭酸
普通化学
有机化学
催化作用
激发态
臭氧
物理
核物理学
作者
Connor J. Clarke,Jemma A. Gibbard,Lewis Hutton,Jan R. R. Verlet,Basile F. E. Curchod
标识
DOI:10.1038/s41467-022-28582-4
摘要
The photochemistry of pyruvic acid has attracted much scientific interest because it is believed to play critical roles in atmospheric chemistry. However, under most atmospherically relevant conditions, pyruvic acid deprotonates to form its conjugate base, the photochemistry of which is essentially unknown. Here, we present a detailed study of the photochemistry of the isolated pyruvate anion and uncover that it is extremely rich. Using photoelectron imaging and computational chemistry, we show that photoexcitation by UVA light leads to the formation of CO2, CO, and CH3-. The observation of the unusual methide anion formation and its subsequent decomposition into methyl radical and a free electron may hold important consequences for atmospheric chemistry. From a mechanistic perspective, the initial decarboxylation of pyruvate necessarily differs from that in pyruvic acid, due to the missing proton in the anion.
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