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首页> 外文期刊>Journal of the American Chemical Society >CMPs as Scaffolds for Constructing Porous Catalytic Frameworks: A Built-in Heterogeneous Catalyst with High Activity and Selectivity Based on Nanoporous Metalloporphyrin Polymers
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CMPs as Scaffolds for Constructing Porous Catalytic Frameworks: A Built-in Heterogeneous Catalyst with High Activity and Selectivity Based on Nanoporous Metalloporphyrin Polymers

机译:CMPs作为构建多孔催化框架的支架:基于纳米孔金属卟啉聚合物的内置式高活性高选择性非均相催化剂

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摘要

This article describes the synthesis and functions of a porous catalytic framework based on conjugated micro- and mesoporous polymers with metalloporphyrin building blocks (FeP-CMP). FeP-CMP was newly synthesized via a Suzuki polycondensation reaction and was developed as a heterogeneous catalyst for the activation of molecular oxygen to convert sulfide to sulfoxide under ambient temperature and pressure. FeP-CMP is intriguing because the polymer skeleton itself is built from catalytic moieties and serves as built-in catalysts, bears inherent open nanometer-scale pores that are accessible for substrates, and possesses large surface areas (1270 m2 g−1) that facilitate the transformation reaction. It is highly efficient with high conversion (up to 99%) and a large turnover number (TON = 97,320), is widely applicable to various sulfides covering from aromatic to alkyl and cyclic substrates, displays high selectivity (up to 99%) to form corresponding sulfoxides, and is highly chemoselective for the oxidation of a sulfide group even in the coexistence of other oxidative functionalities. Owing to the covalent linkages between catalytic sites in the frameworks, FeP-CMP can be recycled with good retention of its porous structure and allows for large-scale transformation. These unique characteristics clearly originate from the covalent porous catalytic framework structure and demonstrate the usefulness of CMPs in the exploration of built-in heterogeneous catalysts, a new potential of these materials that have thus far been reported to exhibit noteworthy gas adsorption functions.
机译:本文介绍了基于具有金属卟啉结构单元(FeP-CMP)的共轭微孔和中孔聚合物的多孔催化骨架的合成和功能。 FeP-CMP是通过Suzuki缩聚反应新合成的,并已开发为一种非均相催化剂,用于在环境温度和压力下活化分子氧以将硫化物转化为亚砜。 FeP-CMP之所以令人着迷,是因为聚合物骨架本身是由催化部分构成的,并用作内置催化剂,具有固有的纳米级开放孔隙,可被底物进入,并具有较大的表面积(1270 m 2 g -1 )促进转化反应。它是高效的,具有高转化率(高达99%)和大周转率(TON = 97,320),广泛适用于从芳族化合物到烷基和环状底物的各种硫化物,显示出高选择性(高达99%)形成相应的亚砜,即使在其他氧化功能共存的情况下,对硫化物基团的氧化也具有高度的化学选择性。由于构架中催化位点之间的共价键,FeP-CMP可以很好地保留其多孔结构进行回收,并可以进行大规模转化。这些独特的特性显然源自共价多孔催化框架结构,并证明了CMP在探究内置非均相催化剂方面的有用性,迄今为止,这些材料的新潜力据报道显示出值得注意的气体吸附功能。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第26期|p.9138-9143|共6页
  • 作者

    Long Chen;

  • 作者单位

    Department of Materials Molecular Science, Institute for Molecular Science, 5-1 Higashiyama, Myodaiji, Okazaki 444-8787, Japan and PRESTO, JST, Japan;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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