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首页> 外文期刊>RSC Advances >MnO2 nanowires anchored on amine functionalized graphite nanosheets: highly active and reusable catalyst for organic oxidation reactions
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MnO2 nanowires anchored on amine functionalized graphite nanosheets: highly active and reusable catalyst for organic oxidation reactions

机译:MNO2纳米线固定在胺官能化石墨纳米液中:用于有机氧化反应的高活性和可重复使用的催化剂

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摘要

A facile method of synthesizing MnO2 nanowires on amine functionalized graphite nanosheet (AFGNS) has been accomplished. A probable mechanism has been proposed where the -NH2 groups on the AFGNS surface create a weakly basic environment assisting the reduction of KMnO4 to MnO2 nanoparticles followed by their anchoring and oriented growth to form MnO2 nanowires. The as prepared MnO2@AFGNS composite has been efficiently used as a selective heterogeneous catalyst for oxidation of primary and secondary benzyl alcohols to corresponding carbonyl compounds under aerobic condition in high yields in the absence of any other oxidizing or activating agent. While MnO2 is considered as the most efficient and selective catalyst for the oxidation of benzyl and allyl alcohols, its large excess use (200 mol% with respect to the substrate) has been circumvented in this work by using heterogeneous AFGNS supported MnO2 (only 7 mol% with respect to the substrate). The synergistic effect between the 1-D MnO2 nanowires and AFGNS facilitates very fast e(-) transfer enabling such huge enhancement of the catalytic activity of the MnO2@AFGNS composite. The composite also shows sufficient reuse capability and stability after 3 cycles of catalysis thus making it a potentially cheap and active catalyst in the field of organic catalysis.
机译:已经完成了在胺官能化石墨纳米片(AFGNS)上合成MNO2纳米线的容易方法。已经提出了可能的机制,其中AFGNS表面上的-NH2基团产生弱碱性环境,辅助KMnO 4降低到MNO2纳米颗粒,然后锚固和取向生长形成MNO2纳米线。如制备的MNO2 @ AFGNS复合材料已被有效地用作在不存在任何其他氧化或活化剂的情况下以高产率在有氧条件下对相应的羰基化合物氧化的选择性异质催化剂。虽然MnO 2被认为是苄基和烯丙基醇氧化的最有效和选择性催化剂,但通过使用支持的MnO 2支持的非均相AFGN(仅7摩尔),在该工作中避免了其大量过量使用(相对于基材200摩尔%)(仅7摩尔关于基板的%)。 1-D MnO2纳米线和AFGN之间的协同效应有助于非常快速的E( - )转移,从而使MNO2 @ AFGNS复合材料的催化活性提高了这种巨大的增强。复合材料还显示出3次催化后的足够的重用能力和稳定性,从而使其在有机催化领域成为潜在的便宜和活性催化剂。

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  • 来源
    《RSC Advances》 |2015年第112期|共11页
  • 作者单位

    CSIR Cent Glass &

    Ceram Res Inst Nanostruct Mat Div Kolkata 700032 India;

    N Bengal Univ Dept Chem Darjeeling 734013 India;

    N Bengal Univ Dept Chem Darjeeling 734013 India;

    CSIR Cent Glass &

    Ceram Res Inst Nanostruct Mat Div Kolkata 700032 India;

    CSIR Cent Glass &

    Ceram Res Inst Nanostruct Mat Div Kolkata 700032 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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