氧化还原
生物催化
化学
电子转移
羟基化
催化作用
酶
光化学
半反应
光诱导电子转移
光催化
组合化学
电子传输链
反应机理
有机化学
生物化学
作者
Sahng Ha Lee,Da Som Choi,Su Keun Kuk,Chan Beum Park
标识
DOI:10.1002/anie.201710070
摘要
Abstract Biocatalytic transformation has received increasing attention in the green synthesis of chemicals because of the diversity of enzymes, their high catalytic activities and specificities, and mild reaction conditions. The idea of solar energy utilization in chemical synthesis through the combination of photocatalysis and biocatalysis provides an opportunity to make the “green” process greener. Oxidoreductases catalyze redox transformation of substrates by exchanging electrons at the enzyme′s active site, often with the aid of electron mediator(s) as a counterpart. Recent progress indicates that photoinduced electron transfer using organic (or inorganic) photosensitizers can activate a wide spectrum of redox enzymes to catalyze fuel‐forming reactions (e.g., H 2 evolution, CO 2 reduction) and synthetically useful reductions (e.g., asymmetric reduction, oxygenation, hydroxylation, epoxidation, Baeyer–Villiger oxidation). This Review provides an overview of recent advances in light‐driven activation of redox enzymes through direct or indirect transfer of photoinduced electrons.
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