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Photocatalytic conversion of methane: Catalytically active sites and species

机译:甲烷的光催化转化:催化活性位点和种类

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The development of direct routes for catalytic functionalization of methane would accelerate the chemical utilization of this abundant carbon resource to produce value-added chemicals or easily transportable fuels. However, the selective transformation of methane remains highly challenging due to the dilemma between the activation of inert C-H bond and the keeping of vulnerable target products from over-oxidation or deep dehydrogenation. A number of studies have been devoted to selective methane transformations by heterogeneous photocatalysis. Unlike a comprehensive review of the field, this article focuses on the insights into the catalytically active sites/species, which are usually overlooked in photocatalysis, and offers the strategies that may facilitate selective methane conversions by manipulating the active sites/species at surface/ interface regions. The key factors that determine not only the C-H activation but also the selectivity control are discussed. The future opportunities for photocatalytic methane conversions by rationally controlling catalytic active sites/species are analyzed.
机译:开发甲烷催化功能化的直接路线将加速这种丰富碳资源的化学利用,以生产增值化学品或易于运输的燃料。然而,由于惰性C-H键的激活与防止易受伤害的目标产物免受过度氧化或深度脱氢之间的两难境地,甲烷的选择性转化仍然极具挑战性。许多研究致力于通过非均相光催化进行选择性甲烷转化。与该领域的全面回顾不同,本文侧重于对催化活性位点/物种的见解,这些位点/物种在光催化中通常被忽视,并提供了可能通过操纵表面/界面区域的活性位点/物种来促进选择性甲烷转化的策略。讨论了不仅决定C-H活化的关键因素,还讨论了选择性控制的关键因素。分析了通过合理控制催化活性位点/种类实现光催化甲烷转化的未来机遇。

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