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Bipyridine- and Phenanthroline-Based Metal-Organic Frameworks for Highly Efficient and Tandem Catalytic Organic Transformations via Directed C-H Activation

机译:联吡啶和菲咯啉基金属有机骨架通过定向C-H活化进行高效和串联催化有机转化

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摘要

We report here the synthesis of a series of robust and porous bipyridyl- and phenanthryl-based metal-organic frameworks (MOFs) of UiO topology (BPV-MOF, mBPV-MOF, and mPT- MOF) and their postsynthetic metalation to afford highly active single-site solid catalysts. While BPV-MOF was constructed from only bipyridyl-functionalized dicarboxylate linker, both mBPV- and mPT-MOF were built with a mixture of bipyridyl- or phenanthryl- functionalized and unfunctionalized dicarboxylate linkers. The postsynthetic metalation of these MOFs with [Ir(COD)(OMe)]_2 provided Ir-functionalized MOFs (BPV-MOF-Ir, mBPV-MOF-Ir, and mPT-MOF-Ir), which are highly active catalysts for tandem hydrosilylation of aryl ketones and aldehydes followed by dehydrogenative ortho-silylation of benzylicsilyl ethers as well as C-H borylation of arenes using B_2pin_2. Both mBPV-MOF-Ir and mPT-MOF-Ir catalysts displayed superior activities compared to BPV-MOF-Ir due to the presence of larger open channels in the mixed-linker MOFs. Impressively, mBPV-MOF-Ir exhibited high TONs of up to 17000 for C-H borylation reactions and was recycled more than 15 times. The mPT-MOF-Ir system is also active in catalyzing tandem dehydrosilylation/dehydrogenative cyclization of N-methylbenzyl amines to azasilolanes in the absence of a hydrogen acceptor. Importantly, MOF-Ir catalysts are significantly more active (up to 95 times) and stable than their homogeneous counterparts for all three reactions, strongly supporting the beneficial effects of active site isolation within MOFs. This work illustrates the ability to increase MOF open channel sizes by using the mixed linker approach and shows the enormous potential of developing highly active and robust single-site solid catalysts based on MOFs containing nitrogen-donor ligands for important organic transformations.
机译:我们在这里报告了一系列坚固且多孔的UiO拓扑结构(BPV-MOF,mBPV-MOF和mPT-MOF)的基于联吡啶和菲基的金属有机骨架(MOF)及其合成后的金属化作用,以提供高活性单中心固体催化剂。虽然BPV-MOF仅由联吡啶基官能化的二羧酸酯连接基构建,但mBPV-和mPT-MOF均由联吡啶基或菲基官能化和未官能化的二羧酸酯连接基的混合物构建。这些具有[Ir(COD)(OMe)] _ 2的MOF的后合成金属化提供了Ir官能化的MOF(BPV-MOF-Ir,mBPV-MOF-Ir和mPT-MOF-Ir),它们是串联的高活性催化剂使用B_2pin_2对芳基酮和醛进行氢化硅烷化,然后对苄基甲硅烷基醚进行脱氢邻甲硅烷基化,以及对芳烃进行CH硼化。与BPV-MOF-Ir相比,mBPV-MOF-Ir和mPT-MOF-Ir催化剂均表现出优异的活性,这是由于混合连接基MOF中存在较大的开放通道。令人印象深刻的是,对于C-H硼化反应,mBPV-MOF-Ir表现出高达17000的高TON,并且被回收利用了15次以上。在没有氢受体的情况下,mPT-MOF-Ir系统还可以催化N-甲基苄基胺的串联脱氢甲硅烷基化/脱氢环化为氮杂硅酮。重要的是,MOF-Ir催化剂在所有三个反应中均比同质催化剂活泼(高达95倍)且稳定得多,从而强烈支持了MOF中活性位点分离的有益作用。这项工作说明了使用混合连接子方法增加MOF明渠尺寸的能力,并显示了基于MOF的高活性和强固性单中心固体催化剂开发的巨大潜力,该MOF包含重要的有机转化氮供体配体。

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  • 来源
    《Journal of the American Chemical Society》 |2015年第7期|2665-2673|共9页
  • 作者单位

    Department of Chemistry, University of Chicago, 929 E 57th St., Chicago, Illinois 60637, United States;

    Department of Chemistry, University of Chicago, 929 E 57th St., Chicago, Illinois 60637, United States;

    Department of Chemistry, University of Chicago, 929 E 57th St., Chicago, Illinois 60637, United States;

    Department of Chemistry, University of Chicago, 929 E 57th St., Chicago, Illinois 60637, United States;

  • 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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