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首页> 外文期刊>Journal of the American Chemical Society >Impregnating Subnanometer Metallic Nanocatalysts into Self- Pillared Zeolite Nanosheets
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Impregnating Subnanometer Metallic Nanocatalysts into Self- Pillared Zeolite Nanosheets

机译:将亚晶仪金属纳米催化剂浸渍到自柱状沸石纳米片中

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摘要

Impregnation is the most commonly used approach to prepare supported metal catalysts in industry. However, this method surfers from the formation of large metal particles with uneven dispersion, poor thermal stability, and thus unsatisfied catalytic performance. Here, we demonstrate that the self-pillared MFI zeolite (silicalite-1 and ZSM-5) nanosheets with larger surface area and abundant Si-OH groups are ideal supports to immobilize ultrasmall monometallic (e.g., Rh and Ru) and various bimetallic clusters via simple incipient wetness impregnation method. The loaded subnanometric metal clusters are uniformly dispersed within sinusoidal five-membered rings of MFI and remain stable at high temperatures. The Rh/SP-S-1 is highly efficient in ammonia borane (AB) hydrolysis, showing a TOF value of 430 mol_(H2) mol_(RH)~(-1) min~(-1) at 298 K, which is more than 6-fold improvement over that of nanosized zeolite-supported Rh catalyst and even comparable with that of zeolite-supported Rh single-atom catalyst. Because of the synergistic effect between bimetallic Rh-Ru clusters and zeolite acidity, the H_2 generation rate from AB hydrolysis over Rh_(0.8)Ru_(0.2)/SP-ZSM-5-100 reaches up to 1006 mol_(H2) mol_(metal)~(-1) min~(-1) at 298 K, and also shows record activities in cascade hydrogenation of various nitroarenes by coupling with the hydrolysis of AB. This work demonstrates that zeolite nanosheets are excellent supports to anchor diverse ultrasmall metallic species via the simple impregnation method, and the obtained nanocatalysts can be applied in various industrially important catalytic reactions.
机译:浸渍是制备工业中负载金属催化剂的最常用方法。然而,该方法冲浪者从形成的大金属颗粒的形成具有不均匀的分散,耐热稳定性差,因此不满意的催化性能。在这里,我们证明了具有较大表面积和丰富的Si-OH基团的自柱式MFI沸石(硅胶-1和ZSM-5)纳米蛋白酶是固定超强单金属(例如,RH和Ru)和各种双金属簇的理想支撑件简单的初期湿度浸渍方法。装载的亚级金属簇均匀地分散在MFI的正弦五元环内,并在高温下保持稳定。 RH / SP-S-1在氨硼烷(AB)水解中高效,显示为298 k的430mol_(H2)mol_(RH)〜(-1)min〜(-1)的TOF值。超过纳米沸石负载的RH催化剂的提高超过6倍,甚至与沸石负载的RH单原子催化剂的甚至相当。由于双金属Rh-Ru簇和沸石酸度之间的协同效应,来自AB水解的H_2生成率在RH_(0.8)RU_(0.2)/ SP-ZSM-5-100达到1006mol_(H2)MOL_(金属) )〜(-1)分钟〜(-1)在298 k,还通过与AB的水解偶联,显示各种硝基甲烷的级联氢化的记录活性。这项工作表明,沸石纳米片是通过简单的浸渍方法锚定不同的超多种金属物质的优异支撑,并且所获得的纳米催化剂可以应用于各种工业上重要的催化反应。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第18期|6905-6914|共10页
  • 作者单位

    State Key Laboratory of Inorganic Synthesis and Preparative Chemistry College of Chemistry Jilin University Changchun 130012 People's Republic of China;

    Innovation Center for Chemical Sciences College of Chemistry Chemical Engineering and Materials Science Soochow University Suzhou 215123 People's Republic of China;

    State Key Laboratory of Inorganic Synthesis and Preparative Chemistry College of Chemistry Jilin University Changchun 130012 People's Republic of China;

    Center for High-resolution Electron Microscopy (ChEM) School of Physical Science and Technology ShanghaiTech University Shanghai 201210 People's Republic of China Institute of Nanoscience and Materials of Aragon (INMA) Spanish National Research Council (CSIC) Advanced Microscopy Laboratory (LMA) University of Zaragoza 50009 Zaragoza Spain;

    Electron Microscopy Center Jilin University Changchun 130012 People's Republic of China;

    National Centre for Magnetic Resonance in Wuhan State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics Innovation Academy for Precision Measurement Science and Technology Chinese Academy of Sciences Wuhan 430071 People's Republic of China;

    National Centre for Magnetic Resonance in Wuhan State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics Innovation Academy for Precision Measurement Science and Technology Chinese Academy of Sciences Wuhan 430071 People's Republic of China;

    Department of Chemistry Dalhousie University Halifax Nova Scotia B3H 4R2 Canada;

    State Key Laboratory of Inorganic Synthesis and Preparative Chemistry College of Chemistry and International Center of Future Science Jilin University Changchun 130012 People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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