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首页> 外文期刊>Angewandte Chemie >Selective Electroenzymatic Oxyfunctionalization by Alkane Monooxygenase in a Biofuel Cell
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Selective Electroenzymatic Oxyfunctionalization by Alkane Monooxygenase in a Biofuel Cell

机译:生物燃料细胞中烷烃单氧酶选择性电酶氧官化

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摘要

Aliphatic synthetic intermediates with high added value are generally produced from alkane sources (e.g., petroleum) by inert carbon-hydrogen (C-H) bond activation using classical chemical methods (i.e. high temperature, rare metals). As an alternative approach for these reactions, alkane monooxygenase from Pseudomonas putida (alkB) is able to catalyze the difficult terminal oxyfunctionalization of alkanes selectively and under mild conditions. Herein, we report an electrosynthetic system using an alkB biocathode which produces alcohols, epoxides, and sulfoxides through bioelectrochemical hydroxylation, epoxidation, sulfoxidation, and demethylation. The capacity of the alkB binding pocket to protect internal functional groups is also demonstrated. By coupling our alkB biocathode with a hydrogenase bioanode and using H-2 as a clean fuel source, we have developed and characterized a series of enzymatic fuel cells capable of oxyfunctionalization while simultaneously producing electricity.
机译:具有高附加值的脂族合成中间体通常通过使用经典化学方法(即高温,稀有金属)的惰性碳 - 氢(C-H)键活化来源于烷烃来源(例如石油)。 作为这些反应的替代方法,来自假单胞菌(ALKB)的烷烃单氧化酶能够选择性地和在温和条件下催化烷烃的难终末端氧官能化。 在此,我们通过生物电化学羟基化,环氧化,亚磺氧化和去甲基化,通过生物电化学羟化,环氧化,亚砜和去甲基化来报告一种电气合成系统。 还证明了以保护内部官能团的ALKB结合口袋的容量。 通过将我们的ALKB生物病变用氢酶生物偶联并使用H-2作为清洁燃料源,我们已经开发并表征了一系列能够氧气化的酶促燃料电池,同时产生电力。

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