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Dynamic structural evolution of supported palladium-ceria core-shell catalysts revealed by in situ electron microscopy

机译:原位电子显微镜揭示负载型二氧化铈核壳催化剂的动态结构演变

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摘要

The exceptional activity for methane combustion of modular palladium-ceria core-shell subunits on silicon-functionalized alumina that was recently reported has created renewed interest in the potential of core-shell structures as catalysts. Here we report on our use of advanced ex situ and in situ electron microscopy with atomic resolution to show that the modular palladium-ceria core-shell subunits undergo structural evolution over a wide temperature range. In situ observations performed in an atmospheric gas cell within this temperature range provide real-time evidence that the palladium and ceria nanoparticle constituents of the palladium-ceria core-shell participate in a dynamical process that leads to the formation of an unanticipated structure comprised of an intimate mixture of palladium, cerium, silicon and oxygen, with very high dispersion. This finding may open new perspectives about the origin of the activity of this catalyst.
机译:最近报道,硅官能化氧化铝上的模块化钯-二氧化铈核-壳亚基在甲烷燃烧中具有出色的活性,这引起了人们对核-壳结构作为催化剂的潜力的新兴趣。在这里,我们报告了使用先进的非原位和原位电子显微镜进行原子分辨的结果,表明模块化的钯-二氧化铈核-壳亚基在很宽的温度范围内经历了结构演化。在此温度范围内的大气气室中进行的原位观察提供了实时证据,表明钯-二氧化铈核壳中的钯和二氧化铈纳米颗粒成分参与了动态过程,该动力学过程导致了由碳纳米管组成的未预期结构的形成。钯,铈,硅和氧的紧密混合物,具有很高的分散性。这一发现可能为该催化剂活性的起源开辟新的前景。

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