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Tracking light-induced electron transfer toward O

机译:跟踪光诱导的电子转移向O

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摘要

Photobiocatalysis uses light to perform specific chemical transformations in a selective and efficient way. The intention is to couple a photoredox cycle with an enzyme performing multielectronic catalytic activities. Laccase, a robust multicopper oxidase, can be envisioned to use dioxygen as a clean electron sink when coupled to an oxidation photocatalyst. Here, we provide a detailed study of the coupling of a [Ru(bpy)3]2+ photosensitizer to laccase. We demonstrate that efficient laccase reduction requires an electron relay like methyl viologen. In the presence of dioxygen, electrons transiently stored in superoxide ions are scavenged by laccase to form water instead of H2O2. The net result is the photo accumulation of highly oxidizing [Ru(bpy)3]3+. This study provides ground for the use of laccase in tandem with a light-driven oxidative process and O2 as one-electron transfer relay and as four-electron substrate to be a sustainable final electron acceptor in a photocatalytic process.
机译:Photobiocatysis用光以选择性和有效的方式进行特定的化学转换。目的是将摄影毒剂循环与执行多电子催化活性进行酶。漆酶是一种稳健的多杯氧化酶,可以设想,用DiOxygen在耦合到氧化光催化剂时用作清洁电子沉降。在这里,我们提供了一种[Ru(BPY)3] 2+光敏剂到漆酶的偶联的详细研究。我们证明了有效的漆晶晶晶晶晶体,需要像甲基Viologen这样的电子继电器。在二恶英的存在下,通过漆酶透明储存在超氧化物离子中的电子以形成水代替H 2 O 2。净结果是高氧化的照片积聚[ru(bpy)3] 3+。该研究提供了在串联中使用漆酶的研磨,用光驱动的氧化过程和O2作为单电子转移继电器和四电子基质,是光催化过程中的可持续最终电子受体。

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