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Analyzing the Case for Bifunctional Catalysis

机译:分析双功能催化的案例

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摘要

Bifunctional coupling of two different catalytic site types has often been invoked to explain experimentally observed enhanced catalytic activities. We scrutinize such claims with generic scaling-relation-based microkinetic models that allow exploration of the theoretical limits for such a bifunctional gain for several model reactions. For sites at transition-metal surfaces, the universality of the scaling relations between adsorption energies largely prevents any improvements through bifunctionality. Only the consideration of systems that involve the combination of different materials, such as metal particles on oxide supports, offers hope for significant bifunctional gains.
机译:两种不同催化位点的双功能偶联通常已经调用以解释实验观察到的增强催化活性。 我们用基于通用的基于缩放关系的微因模型仔细审查这些索赔,其允许探索这种双功能增益的理论限制,以获得多种模型反应。 对于过渡金属表面的网站,吸附能量之间的缩放关系的普遍性主要防止通过双功能性改进。 只考虑涉及不同材料组合的系统,例如氧化物支撑件上的金属颗粒,提供了显着的双功能收益的希望。

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