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Nanoparticle/Metal-Organic Framework Composites for Catalytic Applications: Current Status and Perspective

机译:纳米粒子/金属 - 有机骨架复合材料用于催化应用:当前状态和透视

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摘要

Nanoparticle/metal-organic frameworks (MOF) based composites have recently attracted significant attention as a new class of catalysts. Such composites possess the unique features of MOFs (including clearly defined crystal structure, high surface area, single site catalyst, special confined nanopore, tunable, and uniform pore structure), but avoid some intrinsic weaknesses (like limited electrical conductivity and lack in the conventional catalytically active sites). This review summarizes the developed strategies for the fabrication of nanoparticle/MOF composites for catalyst uses, including the strategy using MOFs as host materials to hold and stabilize the guest nanoparticles, the strategy with subsequent MOF growth/assembly around pre-synthesized nanoparticles and the strategy mixing the precursors of NPs and MOFs together, followed by self-assembly process or post-treatment or post-modification. The applications of nanoparticle/MOF composites for CO oxidation, CO2 conversion, hydrogen production, organic transformations, and degradation of pollutants have been discussed. Superior catalytic performances in these reactions have been demonstrated. Challenges and future developments are finally addressed.
机译:纳米粒子/金属 - 有机框架(MOF)的复合材料最近吸引了作为新一类催化剂的重要关注。这种复合材料具有MOF的独特特征(包括明确定义的晶体结构,高表面积,单位催化剂,特殊狭窄的纳米孔,可调谐和均匀的孔结构),但避免了一些内在的弱点(如有限的导电性和常规缺乏缺乏催化活性位点)。本综述总结了制备纳米粒子/ MOF复合材料的开发策略用于催化剂用途,包括使用MOF作为宿主材料的策略以保持和稳定客体纳米粒子,该策略随后的MOF生长/组装在预合成的纳米粒子周围和策略中的策略将NPS和MOF的前体混合在一起,然后进行自组装过程或后处理或后修饰。讨论了纳米粒子/ MOF复合材料的应用,CO 2转化,氢气产生,有机转化和污染物的降解。已经证明了这些反应中的优异催化性能。终于解决了挑战和未来发展。

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