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Noble Metal Particles Confined in Zeolites: Synthesis Characterization and Applications

机译:限制在沸石中的贵金属颗粒:合成表征和应用

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摘要

Noble metal nanoparticles or subnanometric particles confined in zeolites, that is, metal@zeolite, represent an important type of functional materials with typical core–shell structure. This type of material is known for decades and recently became a research hotspot due to their emerging applications in various fields. Remarkable achievements are made dealing with the synthesis, characterization, and applications of noble metal particles confined in zeolites. Here, the most representative research progress in metal@zeolites is briefly reviewed, aiming to boost further research on this topic. For the synthesis of metal@zeolites, various strategies, such as direct synthesis from inorganic or ligand‐assisted noble metal precursors, multistep postsynthesis encapsulation and ion‐exchange followed by reduction, are introduced and compared. For the characterization of metal@zeolites, several most useful techniques, such as electron microscopy, X‐ray based spectroscopy, infrared and fluorescence emission spectroscopy, are recommended to check the successful confinement of noble metal particles in zeolite matrix and their unique physiochemical properties. For the applications of metal@zeolites, catalysis and optics are involved with an emphasis on catalytic applications including the size‐dependent catalytic properties, the sintering‐resistance properties, the substrate shape‐selective catalysis, and catalysis modulation by zeolite microenvironment.
机译:限制在沸石中的贵金属纳米颗粒或亚纳米颗粒,即metal @ zelite,代表了一种具有典型核壳结构的功能材料的重要类型。这种材料已有数十年的知名度,由于它们在各个领域的新兴应用,最近成为研究热点。在限制沸石中贵金属颗粒的合成,表征和应用方面取得了显著成就。在此,简要概述了金属@沸石最有代表性的研究进展,旨在促进对此主题的进一步研究。对于金属沸石的合成,引入并比较了各种策略,例如从无机或配体辅助的贵金属前体直接合成,多步后合成包封和离子交换后还原的策略。为了表征金属@沸石,建议使用几种最有用的技术,例如电子显微镜,基于X射线的光谱,红外和荧光发射光谱,以检查贵金属颗粒在沸石基质中的成功限制及其独特的理化性质。对于金属@沸石的应用,催化和光学涉及催化应用,包括取决于尺寸的催化性能,耐烧结性,基质形状选择性催化以及沸石微环境对催化的调节。

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