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Highly active Au/d-MoC and Cu/d-MoC catalysts for the conversion of CO2: The metal/C ratio as a key factor defining activity, selectivity and stability

机译:用于转化CO2的高活性Au / d-MoC和Cu / d-MoC催化剂:金属/碳比是决定活性,选择性和稳定性的关键因素

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摘要

The ever growing increase of CO2 concentration in the atmosphere is one of the main causes of global warming. Thus, CO2 activation and conversion towards valuable added compounds is a major scientific challenge. A new set of Au/δ-MoC and Cu/δ-MoC catalysts exhibits high activity, selectivity, and stability for the reduction of CO2 to CO with some subsequent selective hydrogenation towards methanol. Sophisticated experiments under controlled conditions and calculations based on density functional theory have been used to study the unique behavior of these systems. A detailed comparison of the behavior of Au/β-Mo2C and Au/δ-MoC catalysts provides evidence of the impact of the metal/carbon ratio in the carbide on the performance of the catalysts. The present results show that this ratio governs the chemical behavior of the carbide and the properties of the admetal, up to the point of being able to switch the rate and mechanism of the process for CO2 conversion. A control of the metal/carbon ratio paves the road for an efficient reutilization of this environmental harmful greenhouse gas.
机译:大气中二氧化碳浓度的不断增长是造成全球变暖的主要原因之一。因此,CO 2活化和转化为有价值的添加化合物是一项重大的科学挑战。一组新的Au /δ-MoC和Cu /δ-MoC催化剂显示出高的活性,选择性和稳定性,可将CO2还原为CO,随后进行选择性加氢成甲醇。在受控条件下的复杂实验和基于密度泛函理论的计算已用于研究这些系统的独特行为。 Au /β-Mo2C和Au /δ-MoC催化剂行为的详细比较提供了碳化物中金属/碳比对催化剂性能的影响的证据。目前的结果表明,该比率控制着碳化物的化学行为和金属元素的性能,直至能够改变CO2转化过程的速率和机理为止。控制金属/碳比为有效地再利用这种对环境有害的温室气体铺平了道路。

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