(Invited) Bioelectrochemical Strategies for C-H Activation

Shelley D. Minteer
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Abstract

Petroleum hydrocarbons are currently our major energy source and an important feedstock for the chemical industry. Beyond combustion, conversion of chemically inert hydrocarbons to more valuable chemicals is of considerable interest. However, two challenges hinder this conversion. One is the regioselective activation of inert carbon–hydrogen (C–H) bonds. The other is designing a pathway to realize this complicated conversion. This paper will discuss the use of alkane monoxygenases in bioelectrochemical systems for C-H activation, as well as enzyme cascades and hybrid catalytic cascades for the conversion of inert alkanes to complex organic molecules like imines with selectivity far beyond traditional homogeneous and heterogeneous catalysts.
(邀请)C-H活化的生物电化学策略
石油烃是目前我国的主要能源,也是化工行业的重要原料。除了燃烧之外,将化学惰性的碳氢化合物转化为更有价值的化学物质也引起了相当大的兴趣。然而,有两个挑战阻碍了这种转变。一种是惰性碳氢键的区域选择性活化。另一个是设计一个途径来实现这种复杂的转换。本文将讨论烷烃单加氧酶在生物电化学系统中用于C-H活化的应用,以及酶级联和混合催化级联用于将惰性烷烃转化为复杂的有机分子,如亚胺,其选择性远远超过传统的均相和非均相催化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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