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首页> 外文期刊>Journal of the American Chemical Society >Methane Borylation Catalyzed by Ru, Rh, and Ir Complexes in Comparison with Cyclohexane Borylation: Theoretical Understanding and Prediction
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Methane Borylation Catalyzed by Ru, Rh, and Ir Complexes in Comparison with Cyclohexane Borylation: Theoretical Understanding and Prediction

机译:与Ru,Rh和红外复合物催化的甲烷促进促进与环己烷促进型:理论认识和预测

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摘要

Methane borylation catalyzed by Cp*M(Bpin)_n (M = Ru or Rh; HBpin = pinacolborane; n = 2 or 3) and (TMPhen)Ir(Bpin)_3 (TMPhen = 3,4,7,8-tetramethyl-1,10-phenanthroline) was investigated by DFT in comparison with cyclohexane borylation. Because Ru-catalyzed borylation has not been theoretically investigated yet, its reaction mechanism was first elucidated; Cp*Ru(Bpin)_3 1-Ru is an active species, and Cp*Ru(Bpin)_3(H)(CH_3) 4-Ru is a key intermediate. In 4-Ru, the Ru is understood to have an ambiguous oxidation state between +Ⅳ and +Ⅵ because it has a H··Bpin bonding interaction with a bond order of about 0.5. Methane borylation occurs through oxidative addition of methane C-H bond followed by reductive elimination of borylmethane in all of these catalysts. The catalytic activity for methane borylation increases following the order Cp*Ru(Bpin)_3 < (TMPhen)Ir(Bpin)_3 < Cp*Rh(Bpin)_2. Cyclohexane borylation occurs in the same mechanism except for the presence of isomerization of a key intermediate. Chemoselectivity of methane over cyclohexane increases following the order Ir < Ru < Rh. In all of these catalysts, the rate-determining step (RDS) of cyclohexane borylation needs a larger △G~(°‡) than the RDS of methane borylation because the more bulky cyclohexyl group induces larger steric repulsion with the ligand than methyl. One reason for the worse chemoselectivity of the Ir catalyst is its less congested transition state of the reductive elimination of borylcyclohexane. Herein, use of a strongly electron-donating ligand consisting of pyridine and N-heterocyclic carbene with bulky substituents is computationally proposed as a good ligand for the Ir catalyst; actually, the Ir complex of this ligand is calculated to be more active and more chemoselective than Cp*Rh(Bpin)_2 for methane borylation.
机译:CP * m(bpin)_n(m = Ru或Rh; Hbpin = Pinacolborane; n = 2或3)和(tmphen)Ir(bpin)_3(tmphen = 3,4,7,8-四甲基 - 通过DFT研究了1,10-菲咯啉与环己烷硼化的相比之下。因为尚未理解的ru催化的硼化术尚未得到理论上研究,所以首先阐明其反应机理; CP * Ru(BPIN)_3 1-ru是活性物种,CP * Ru(BPIN)_3(H)(CH_3)4-ru是一个关键中间体。在4-Ru中,Ru被理解为在+ +和+之间具有模糊的氧化状态,因为它具有H··bpin键合的相互作用,键合约为约0.5。通过甲烷C-H键的氧化添加,然后在所有这些催化剂中进行硼丙烷的氧化硼酸溶液发生甲烷促进。甲烷硼化的催化活性在顺序CP * Ru(BPIN)_3 <(TMPHEN)IR(BPIN)_3

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  • 来源
    《Journal of the American Chemical Society》 |2020年第39期|16732-16747|共16页
  • 作者单位

    Laboratory of Theoretical and Computational Chemistry Institute of Theoretical Chemistry College of Chemistry Jilin University Changchun 130023 P. R. China;

    Element Strategy Initiative for Catalysts and Batteries Kyoto University Nishikyo-ku Kyoto 615-8245 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);
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  • 正文语种 eng
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