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首页> 外文期刊>Journal of the American Chemical Society >Unmasking the Ligand Effect in Manganese-Catalyzed Hydrogenation: Mechanistic Insight and Catalytic Application
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Unmasking the Ligand Effect in Manganese-Catalyzed Hydrogenation: Mechanistic Insight and Catalytic Application

机译:揭示锰催化加氢中的配体效应:机理研究和催化应用

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摘要

Manganese-catalyzed hydrogenation reactions have attracted broad interest since the first report in 2016. Among the reported catalytic systems, Mn catalysts supported by tridentate PNP- and NNP-pincer ligands have most commonly been used. For example, a number of PNP-Mn pincer catalysts have been reported for the hydrogenation of aldehydes, aldimines, ketones, nitriles, and esters. Furthermore, various NNP-Mn pincer catalysts have been shown to be active in the hydrogenation of less-reactive substrates such as amides, carbonates, carbamates, and urea derivations. These observations indicated that Mn catalysts supported by NNP-pincer ligands exhibit higher reactivity in hydrogenation reactions than their PNP counterparts. Such a ligand effect in Mn-catalyzed hydrogenation reactions has yet to be confirmed. Herein, we investigated the origin and applicability of this ligand effect. A combination of experimental and theoretical investigations showed that NNP-pincer ligands on the Mn complexes were more electron-rich and less sterically hindered than their PNP counterparts, leading to higher reactivity in a series of Mn-catalyzed hydrogenation reactions. Inspired by the ligand effect on Mn-catalyzed hydrogenations, we developed the first Mn-catalyzed hydrogenation of N-heterocycles. Specifically, NNP-Mn pincer catalysts hydrogenated a series of N-heterocycles (32 examples) with up to 99% yields, and the corresponding PNP-Mn pincer catalysts afforded low reactivity under the same conditions. This verified that such a ligand effect is generally applicable in hydrogenation reactions of both carbonyl and noncarbonyl substrates based on Mn catalysis.
机译:自2016年首次报道以来,锰催化的氢化反应引起了广泛的关注。在已报道的催化体系中,最普遍使用的是三齿PNP和NNP钳位配体负载的Mn催化剂。例如,已经报道了许多用于醛,醛亚胺,酮,腈和酯的氢化的PNP-Mn夹钳催化剂。此外,已显示各种NNP-Mn钳式催化剂在反应性较低的底物(如酰胺,碳酸盐,氨基甲酸酯和尿素衍生物)的氢化中具有活性。这些观察结果表明,由NNP-钳位配体负载的Mn催化剂在氢化反应中的反应性高于其PNP对应物。在Mn催化的氢化反应中的这种配体效应尚未得到证实。在这里,我们调查了这种配体效应的起源和适用性。实验和理论研究的组合表明,Mn配合物上的NNP-pincer配体比PNP对应物更富电子,而且空间位阻较小,从而在一系列Mn催化的氢化反应中具有更高的反应性。受配体对Mn催化的氢化反应的启发,我们开发了第一个Mn催化的N杂环氢化反应。具体而言,NNP-Mn夹钳催化剂以高达99%的产率氢化了一系列N杂环(32个实例),相应的PNP-Mn夹钳催化剂在相同条件下的反应性较低。这证明了这种配体效应通常可用于基于Mn催化的羰基和非羰基底物的氢化反应。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第43期|17337-17349|共13页
  • 作者单位

    Tsinghua Univ Dept Chem CBMS Beijing 100084 Peoples R China;

    Chongqing Univ Chongqing Key Lab Theoret & Computat Chem Sch Chem & Chem Engn Chongqing 400030 Peoples R China;

    Utah State Univ Dept Chem & Biochem 0300 Old Main Hill Logan UT 84322 USA;

  • 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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