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首页> 外文期刊>Journal of the American Chemical Society >sp~3 C-H Borylation Catalyzed by Iridium(Ⅲ) Triboryl Complex: Comprehensive Theoretical Study of Reactivity, Regioselectivity, and Prediction of Excellent Ligand
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sp~3 C-H Borylation Catalyzed by Iridium(Ⅲ) Triboryl Complex: Comprehensive Theoretical Study of Reactivity, Regioselectivity, and Prediction of Excellent Ligand

机译:铱星〜3 C-H促进抗体(Ⅲ)Triboryl复合物:综合理论研究反应性,区域选择性和优异配体预测

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摘要

Iridium-catalyzed C-H borylation of THF was theoretically investigated as example of sp(3) C-H functionalization. DFT computations show that beta-regioselective borylation occurs more easily than does alpha-regioselective, as reported experimentally, through oxidative addition of C-H bond to iridium(III) species and reductive elimination of B-C bond. The reductive elimination is both a rate-determining step and a regioselectivity-determining step. The lower energy transition state (TS) of the reductive elimination of beta-boryloxolane arises from the Ir...(beta-oxolanyl) interaction at TS being stronger than the Ir...(alpha-oxolanyl) one. The Ir...(beta-oxolanyl) interaction being stronger than the Ir...(alpha-oxolanyl) one is a result of the valence orbital energy of the alpha-oxolanyl group being higher than that of the beta-oxolanyl group due to antibonding overlap of the valence orbital with O 2p orbital, where SOMO of oxolanyl radical is taken as valence orbital hereinafter. Reactivity of substrate decreases following the order primary (beta) C-H of ethyl ether primary C-H of n-pentane similar to secondary (beta) C-H of THF secondary C-H of cyclopentane secondary (alpha) C-H of THF similar to secondary C-H of n-pentane secondary (alpha) C-H of ethyl ether. The primary C-H bond is more reactive than the secondary one because of its smaller steric repulsion and lower energy valence orbital of the primary alkyl group. The beta-C-H bond of THF is more reactive than the secondary C-H bond of cyclopentane because of valence orbital energy of the beta-oxolanyl group being lower than that of the cyclopentyl group. Both steric and electronic factors are important for determining reactivity of substrate. Bidentate ligand consisting of pyridine and N-heterocyclic carbene is predicted to be better than 3,4,7,8-tetramethyl-1,10-phenanthroline used experimentally.
机译:理论上是SP(3)C-H官能化的实施例理论上研究了THF的铱催化的C-H促进。 DFT计算表明,通过通过实验报道的α-邻苯二键对铱(III)物种和B-C键的还原消除B-C键,更容易发生β-区域选择性促进β-比α-区域选择性更容易发生。还原消除是速率确定步骤和区域选择性确定步骤。 β-硼氧烷的还原消除的较低能量过渡状态(TS)由TS的IR ...(β-氧化硅烷基)相互作用强于IR ...(α-恶魔)一种。与IR ...(α-恶洛洛洛洛洛糖基)相对强的IR ...(β-恶溶解基)相互作用是α-氧化洛洛基的价轨道能量高于β-恶唑基的价能量的结果与O 2P轨道的价轨道的抗淀粉族重叠,其中氧化洛洛基的SOMO作为术后轨道。基质的反应性降低后乙醚酮的初级(β)CH的正戊烷伯酮Ch,其与THF的次级(β)CH的次级(β)CH为次级(Alpha)Ch的次级(α)。 - 戊烷>乙醚的二次(α)CH。由于其初级烷基的较小的空间排斥和较低的能量价轨道,初级C-H键比第二键更具反应性。由于β-氧化硅基的价轨道能量低于环戊基,THF的β-C-H键比环戊烷的二次C-H键更具反应性。空间和电子因素均对于确定基材的反应性很重要。预计由吡啶和N-杂环基石组成的二齿配体,优于实验使用的3,4,7,8-四甲基-1,10-菲咯啉。

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  • 来源
    《Journal of the American Chemical Society 》 |2019年第25期| 9854-9866| 共13页
  • 作者单位

    Kyoto Univ Fukui Inst Fundamental Chem Sakyo Ku Nishi Hiraki Cho 34-4 Kyoto 6068103 Japan;

    Kyoto Univ Fukui Inst Fundamental Chem Sakyo Ku Nishi Hiraki Cho 34-4 Kyoto 6068103 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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