第三章。支持纳米催化剂的形态依赖活性

S. Kumar, R. Varma, R. Zbořil, M. B. Gawande
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引用次数: 2

摘要

讨论了不同载体金属纳米催化剂(Au, Pd, Pt, Co, Cu和Ru)沉积在不同形态的氧化物载体(氧化铈和氧化锌)上的催化性能。对于重要的工业反应,如一氧化碳氧化、氨合成、水气转换反应、甲醇蒸汽重整等,支持物形态依赖的活性是可识别的。纳米级金属纳米颗粒的合成及其在不同形态的纳米载体(CeO2和ZnO)上的沉积,由于其独特的金属-载体相互作用,赋予了纳米催化剂独特的性能。大多数纳米催化剂由于其表面暴露的平面不同而表现出不同的金属-载体相互作用。此外,金属纳米颗粒的稳定性和均匀分布取决于载体的形态。因此,必须调整载体的形态,在表面上暴露活性面,并利用金属纳米颗粒在这些表面上的选择性沉积来提高纳米催化剂的催化活性。本章重点阐述了载体形态与催化剂反应活性之间重要关系的基本认识,为高效多相催化剂的设计和开发提供了新的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chapter 3. Support Morphology-dependent Activity of Nanocatalysts
The morphology-dependent catalytic performance of various supported metal nanocatalysts (Au, Pd, Pt, Co, Cu and Ru) deposited on oxide supports (cerium oxide and zinc oxide) with varying morphologies are discussed. The support morphology-dependent activity for important industrial reactions such as carbon monoxide oxidation, ammonia synthesis, the water–gas shift reaction, methanol steam reforming, and so forth is discerned. The nanoscale synthesis of metal nanoparticles and their deposition on nanosupports (CeO2 and ZnO) with diverse morphologies imparts unique properties to nanocatalysts owing to the distinctive metal-support interactions. Most of the nanocatalysts display diverse metal-support interactions because of the different planes exposed on their surface. Furthermore, the stability and uniform distribution of the metal nanoparticles is contingent on the morphology of the support. Consequently, it is imperative to tailor the morphology of the support, exposing active planes on the surface and exploiting the selective deposition of metal nanoparticles on these planes to enhance the catalytic activity of nanocatalysts. This chapter focuses on the fundamental understanding of the vital relationship between the support morphology and the ensuing catalyst reactivity, providing a new direction to the design and development of highly efficient heterogeneous catalysts.
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