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Homogeneous Catalytic Dehydrocoupling/Dehydrogenation of Amine-Borane Adducts by Early Transition Metal, Group 4 Metallocene Complexes

机译:早期过渡金属4族茂金属配合物对胺-硼烷加合物的均相催化脱氢/脱氢

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摘要

The efficient catalytic dehydrocoupling of a range of amine-borane adducts, R'RNH·BH_3 (R' = R = Me 1a; R' = R = ~iPr 1b; R' = Me, R = CH_2Ph 1c) by a series of group 4 metallocene type precatalysts has been demonstrated. A reduction in catalytic activity was detected upon descending the group and also on substitution of the cyclopentadienyl (Cp) ligands with sterically bulky or electron-donating substituents. Precatalysts Cp_2TiCl_2/2~nBuLi and Cp_2Ti(PMe_3)_2, which are believed to act as precursors to [Cp_2Ti], were found to promote the transformation of 1a to [Me_2N-BH_2]_2 (3a) in a homogeneous catalytic process. Mechanistic studies identified the linear dimer Me_2NH-BH_2-NMe_2-BH_3 (2a) as a reaction intermediate, which subsequently undergoes further catalytic dehydrogenation to form cyclic dimer 3a. Synthesis of the ~2H-isotopologues of 1a allowed the extraction of phenomenological kinetic isotope effects for 1a → 2a and 2a → 3a from initial rate data, which permitted the proposal of a catalytic cycle with plausible intermediates. Support for the presence of an active Ti(II) catalyst was provided by the lack of reactivity of Ti(III) complexes TiCl_3 and Cp_2TiCl or Ti(0) in the form of THF soluble colloids or bulk Ti powder toward 1a or 1b. Modeling of the rates of consumption of 1a and formation of 3a during catalysis by Cp_2Ti(PMe_3)_2 supported this conclusion and allowed the proposal of a two cycle, four step reaction mechanism. The proposed first cycle generates 2a in a two step process. In the second cycle, interaction of 2a with the same catalyst then results in a catalytic dehydrogenative ring closing reaction to form 3a, also in a two step process.
机译:一系列胺-硼烷加合物R'RNH·BH_3(R'= R = Me 1a; R'= R =〜iPr 1b; R'= Me,R = CH_2Ph 1c)的有效催化脱氢偶联已经证明了第4族茂金属型预催化剂。在该基团下降时以及在环戊二烯基(Cp)配体被空间上庞大的或供电子性取代基取代后,检测到催化活性降低。据发现,预催化剂Cp_2TiCl_2 / 2〜nBuLi和Cp_2Ti(PMe_3)_2是[Cp_2Ti]的前体,它们在均相催化过程中促进了1a向[Me_2N-BH_2] _2(3a)的转化。机理研究确定线性二聚体Me_2NH-BH_2-NMe_2-BH_3(2a)为反应中间体,随后对其进行进一步的催化脱氢反应以形成环状二聚体3a。合成1a的〜2H-同位素,可以从初始速率数据中提取1a→2a和2a→3a的现象学动力学同位素效应,从而提出了用合理的中间体进行催化循环的提议。 Ti(III)配合物TiCl_3和Cp_2TiCl或Ti(0)呈THF可溶性胶体或块状Ti粉末对1a或1b的反应性不足,为存在活性Ti(II)催化剂提供了支持。 Cp_2Ti(PMe_3)_2催化过程中1a消耗速率和3a形成速率的建模支持了这一结论,并提出了两循环四步反应机理的建议。提议的第一个周期分两步生成2a。在第二个循环中,同样在两步过程中,2a与相同催化剂的相互作用导致催化脱氢闭环反应形成3a。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第11期|p.3831-3841|共11页
  • 作者单位

    School of Chemistry, University of Bristol, Bristol, BS8 1TS, United Kingdom;

    School of Chemistry, University of Bristol, Bristol, BS8 1TS, United Kingdom;

    School of Chemistry, University of Bristol, Bristol, BS8 1TS, United Kingdom;

    School of Chemistry, University of Bristol, Bristol, BS8 1TS, United Kingdom;

    School of Chemistry, University of Bristol, Bristol, BS8 1TS, United Kingdom;

    School of Chemistry, University of Bristol, Bristol, BS8 1TS, United Kingdom;

  • 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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  • 入库时间 2022-08-18 03:15:30

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