首页> 外文期刊>Journal of the American Chemical Society >One-Pot Sequential Kinetic Profiling of a Highly Reactive Manganese Catalyst for Ketone Hydroboration: Leveraging σ-Bond Metathesis via Alkoxide Exchange Steps
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One-Pot Sequential Kinetic Profiling of a Highly Reactive Manganese Catalyst for Ketone Hydroboration: Leveraging σ-Bond Metathesis via Alkoxide Exchange Steps

机译:酮氢硼化反应的高反应性锰催化剂的一锅顺序动力学分析:通过醇交换步骤利用σ键复分解。

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摘要

A comprehensive experimental and computational mechanistic study of the highly enantioselective hydroboration of ketones catalyzed by a manganese(II) alkyl boxmi pincer complex is reported. The catalyst operates at low catalyst loadings (down to 0.01 mol %) under very mild conditions (typically −40 °C) and facilitates the reduction of both aryl alkyl and dialkyl ketones with excellent selectivity (up to >95%ee). Catalyst activation pathways were investigated, demonstrating that a manganese(II) hydride and a manganese(II) alkoxide species are part of the catalytic cycle and can be generated via σ-bond metathesis of the alkyl precursor with the borane or by alcoholysis. Extensive kinetic experiments based on a “one-pot sequential kinetic profiling” approach under various conditions in combination with kinetic simulations reveal that two catalytic cycles are effective with this earth-abundant base metal catalyst: (i) a minor MnH/borane-mediated insertion cycle, in which the subsequent, product-releasing metathesis step is rate determining (k _(m ) = 0.076 s~(–1)), giving a background reaction, which is zeroth order in substrate concentrations, and (ii) a major MnOR/borane-based alkoxide exchange process, leveraging the high-barrier metathesis via the affiliation to an insertion step. The latter features non-integer reaction orders in both reagents due to a combination of an adduct formation step (k _(a ) = 2.12 M~(–1) s~(–1), k _(–a ) = 0.49 s~(–1)) and a substrate insertion step of comparable rates (k _(ai ) = 3.74 M~(–1) s~(–1)). The kinetic findings are underpinned by high-level density functional theory calculations of the mechanism, control experiments, and kinetic isotope effect/Hammett/Eyring analysis in different concentration regimes. The study highlights the role of a rigorous mechanistic understanding of homogeneous catalytic processes in 3d metals for rational catalyst discovery and optimization.
机译:报道了锰(II)烷基boxmi钳配合物催化的酮的高对映选择性硼氢化的综合实验和计算机理的研究。催化剂在非常温和的条件下(通常为−40°C)在低催化剂负载量(低至0.01 mol%)下运行,并有助于以优异的选择性(高达> 95%ee)还原芳基烷基和二烷基酮。研究了催化剂的活化途径,证明氢化锰(II)和烷氧基锰(II)是催化循环的一部分,可以通过烷基前驱体与硼烷的σ键复分解或通过醇解反应生成。在各种条件下基于“一锅法顺序动力学分析”方法进行的广泛动力学实验与动力学模拟相结合,表明使用这种富含地球的贱金属催化剂,两个催化循环是有效的:(i)少量MnH /硼烷介导的插入循环,其中随后的产物释放复分解步骤是速率确定( k _( m)= 0.076 s〜(–1)),产生背景反应,其底物浓度为零级, (ii)主要的基于MnOR /硼烷的醇盐交换过程,该过程通过从属关系到插入步骤利用了高能垒复分解。后者的特征在于两种试剂的非整数反应顺序,这归因于加合物形成步骤( k _( a)= 2.12 M〜(–1)s〜(–1), k _( –a)= 0.49 s〜(–1))和可比速率( k _( ai)= 3.74 M〜(–1)s〜(– 1))。动力学发现得到了机理的高密度泛函理论计算,控制实验以及不同浓度范围内的动力学同位素效应/ Hammett / Eyring分析的支持。该研究强调了对3d金属中均相催化过程进行严格的机械理解对于合理发现和优化催化剂的作用。

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  • 来源
    《Journal of the American Chemical Society》 |2018年第29期|9244-9254|共11页
  • 作者单位

    Anorganisch-Chemisches Institut, Universität Heidelberg;

    Anorganisch-Chemisches Institut, Universität Heidelberg;

    Anorganisch-Chemisches Institut, Universität Heidelberg;

  • 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 03:07:23

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