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首页> 外文期刊>Frontiers in Chemistry >Encapsulation of Metal Nanoparticle Catalysts Within Mesoporous Zeolites and Their Enhanced Catalytic Performances: A Review
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Encapsulation of Metal Nanoparticle Catalysts Within Mesoporous Zeolites and Their Enhanced Catalytic Performances: A Review

机译:介孔沸石内金属纳米颗粒催化剂的包封及其增强的催化性能:综述。

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摘要

Metal nanoparticles (NPs) exhibit desired activities in various catalytic reactions. However, the aggregation and sintering of metal NPs usually cause the loss of catalytic performance in practical reaction processes. Encapsulation of catalytically active metal NPs on/within a high-surface-area inorganic support partially resolve such concerns. Microporous zeolites, owing to their rigid frameworks and porous structural features, have been considered as one of ideal inorganic supports. Metal NPs can be easily encapsulated and stabilized within zeolitic frameworks to prevent unwished aggregation during the catalysis. Unfortunately, sole microporous nanochannels (generally < 1 nm) in conventional zeolites are not easy to be accessed. The introduction of another set of nanochannel (e.g., mesopore), known as mesoporous zeolites, can greatly improve the mass-transfer efficiency, which is structurally beneficial for most catalytic reactions. The coexistence of micropores and mesopores in inorganic supports provides the synergetic advantages of both fine confinement effect for metal NPs and easy diffusion for organic reactants/intermediates/products. This review focuses on the recent advances in the design and synthesis of mesoporous zeolites-encapsulated metal NP catalysts as well as their desired catalytic performances (activity and stability) in organic reactions. We first discuss the advantages of mesoporous zeolites as the supports and present general strategies for the construction of mesoporous zeolites. Then, the preparation methods on how to encapsulate NP catalysts within both microporous and mesoporous zeolites are clearly demonstrated. Third, some recent important cases on catalytic applications are presented to verify structural advantages of mesoporous zeolite supports. Within the conclusion, the perspectives on future developments in metal NP catalysts encapsulated within mesoporous zeolites are lastly discussed.
机译:金属纳米颗粒(NPs)在各种催化反应中显示出所需的活性。然而,金属NP的聚集和烧结通常导致在实际反应过程中催化性能的损失。在高表面积无机载体上/之内的催化活性金属NP的包封部分地解决了这种担忧。由于其刚性骨架和多孔结构特征,微孔沸石已被认为是理想的无机载体之一。金属NP可以很容易地封装和稳定在沸石骨架中,以防止催化过程中不希望的聚集。不幸的是,传统沸石中唯一的微孔纳米通道(通常<1 nm)不容易获得。引入另一组称为中孔沸石的纳米通道(例如中孔)可以极大地改善传质效率,这在结构上对大多数催化反应有利。无机载体中微孔和中孔的共存提供了协同优势,即金属NP的精细限制作用和有机反应物/中间体/产物的易于扩散。这篇综述集中在介孔沸石包封的金属NP催化剂的设计和合成及其在有机反应中所需的催化性能(活性和稳定性)方面的最新进展。我们首先讨论介孔沸石作为载体的优点,并提出了介孔沸石构建的一般策略。然后,清楚地说明了如何将NP催化剂包封在微孔和中孔沸石中的制备方法。第三,提出了一些最近在催化应用中的重要案例,以验证中孔沸石载体的结构优势。在结论中,最后讨论了包封在中孔沸石中的金属NP催化剂未来发展的观点。

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