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Advanced electron microscopy characterization of nanostructured heterogeneous catalysts

机译:纳米结构多相催化剂的高级电子显微镜表征

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摘要

Heterogeneous catalysis is one of the oldest nanosciences. Although model catalysts can be designed, synthesized, and, to a certain degree, characterized, industrial heterogeneous catalysts are often chemically and physically complex systems that have been developed through many years of catalytic art, technology, and science. The preparation of commercial catalysts is generally not well controlled and is often based on accumulated experiences. Catalyst characterization is thus critical to developing new catalysts with better activity, selectivity, and/or stability. Advanced electron microscopy, among many characterization techniques, can provide useful information for the fundamental understanding of heterogeneous catalysis and for guiding the development of industrial catalysts. In this article, we discuss the recent developments in applying advanced electron microscopy techniques to characterizing model and industrial heterogeneous catalysts. The importance of understanding the catalyst nanostructure and the challenges and opportunities of advanced electron microscopy in developing nanostructured catalysts are also discussed.
机译:非均相催化是最古老的纳米科学之一。尽管可以设计,合成并在一定程度上表征模型催化剂,但工业非均相催化剂通常是化学和物理上复杂的系统,这些系统是通过多年的催化技术,技术和科学发展而来的。商业催化剂的制备通常不能很好地控制,并且通常基于积累的经验。因此,催化剂表征对于开发具有更好活性,选择性和/或稳定性的新型催化剂至关重要。在许多表征技术中,先进的电子显微镜可以提供有用的信息,以对多相催化的基本理解和指导工业催化剂的发展。在本文中,我们讨论了应用先进的电子显微镜技术表征模型和工业非均相催化剂的最新进展。还讨论了理解催化剂纳米结构的重要性以及先进电子显微镜在开发纳米结构催化剂方面的挑战和机遇。

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