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Nanocluster and single-atom catalysts for thermocatalytic conversion of CO and CO2

机译:纳米和单原子的催化剂thermocatalytic CO和CO2的转换

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摘要

In this Minireview, we discuss recent advances in understanding nanocluster and single-atom catalysts for CO and CO(2)emissions control applications. Through analyzing thermocatalytic CO oxidation and CO(2)reduction, two fundamentally and industrially important reactions, we compare representative nanocluster and single-atom catalytic systems from perspectives of intrinsic chemistry and reaction engineering. Generally, nanoclusters and single atoms display different catalytic performances (i.e., activity, selectivity, and stability) for these reactions depending on the synthesis methods, support materials, and reaction conditions. Key observations of activity and selectivity tradeoffs between nanoclusters and single-atom catalysts are highlighted. The dynamic structural responses of these catalytic species under CO oxidation or CO(2)reduction reaction conditions are also discussed. Synthetic control and detailed experimental and computational characterization of single-atom and nanocluster catalysts for CO and CO(2)conversion have led to exciting progress over the past decade. Still, more efforts are needed to understand and develop catalysts that meet the environmental, energy, and technical requirements to power a sustainable global economy.
机译:在这个小,我们讨论最新进展理解纳米和单原子有限公司和有限公司的催化剂(2)排放控制应用程序。降低CO氧化和(2),两个从根本上和工业重要反应,我们比较具有代表性的纳米和单原子催化的系统观点的内在化学和反应工程。原子显示不同的催化性能(例如,活动、选择性和稳定性)这些反应取决于合成方法、支持材料和反应条件。选择性制备和之间的权衡单原子催化剂的突出显示。动态结构的催化反应物种在CO氧化或有限公司(2)减少反应条件进行了讨论。和详细的实验和控制计算单原子和表征纳米催化剂有限公司和股份有限公司(2)转换导致了令人兴奋的进步在过去的十年。理解和开发满足的催化剂环境、能源和技术要求一个可持续的全球经济。

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