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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >H/D scrambling in a chromium-catalyzed dehydrocoupling reaction of a borane-dimethylamine adduct
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H/D scrambling in a chromium-catalyzed dehydrocoupling reaction of a borane-dimethylamine adduct

机译:H / D在硼烷 - 二甲胺加合物的铬催化的脱氢偶联反应中扰乱

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摘要

H/D scrambling took place in a chromium-catalyzed dehydrocoupling reaction of a deuterium-labeled borane-dimethylamine adduct. In the hydrogen elimination of BH3.NDMe2 (1a-d(N)), H-2, HD and D-2 were generated in 65 : 30 : 5 ratio, and 62% of deuterium atoms were incorporated into the major product, the dimethylaminoborane dimer. Proton and deuteron nuclei were thus concentrated into the evolved dihydrogen and aminoborane dimer, respectively. The mechanism of H/D scrambling is understood based on the reaction pathway of the dehydrocoupling of 1a, which was previously proposed based on DFT calculations. The H/D distribution in the products is explained by the energy difference according to the deuterated position in an intermediate of the dehydrocoupling reaction.
机译:在氘标记的硼烷 - 二甲胺加合物的铬催化的脱氢偶联反应中进行了H / D旋涡。 在BH3.NDME2(1A-D(N))的氢消除中,在65:30:5的比例中产生H-2,HD和D-2,并将62%的氘原子掺入主要产品中, 二甲基氨基吡啶二聚体。 因此,质子和氘核分别浓缩到进化的二氢和氨基硼烷二聚体中。 基于1A的脱氢环耦合的反应途径来理解H / D加扰的机制,其先前提出了基于DFT计算。 产品中的H / D分布通过根据脱水耦合反应中间体中的氘代位置来解释产品差。

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