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Computational study of titanocene-catalyzed dehydrocoupling of the adduct Me2NH center dot BH3: An intramolecular, stepwise mechanism

机译:钛茂金属催化加氢Me2NH中心点BH3脱氢偶联的计算研究:分子内逐步机理

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The titanocene-catalyzed dehydrocoupling of the adduct Me2NH center dot BH3 has been investigated by density functional theory (B3LYP). Unlike the thermal dehydrogenation of ammonia-borane, which was previously found to occur via a concerted mechanism, such a catalytic dehydrogenation of Me2NH center dot BH3 has been found to be a stepwise process. Both intra- and intermolecular dehydrogenation pathways have been computed. The entire intramolecular dehydrogenation process is exergonic by 7.4 kcal/mol, and the intermolecular dehydrogenation is an endergonic process. The solvation free-energy barriers for the intramolecular dehydrogenations are 14.1 and 7.9 kcal/mol, respectively, which are lower than those of the intermolecular dehydrogenation pathway (24.1 and 9.2 kcal/mol, respectively). These results suggest that the intramolecular pathway is preferable both kinetically and energetically. The resulting monomeric aminoborane species, Me2NBH2, may undergo dimerization leading to the cyclic (Me2N-BH2)(2), which was experimentally observed.
机译:已通过密度泛函理论(B3LYP)研究了钛茂金属催化的加合物Me2NH中心点BH3的脱氢偶联。不同于先前发现是通过协同机制发生的氨硼烷的热脱氢,Me2NH中心点BH3的这种催化脱氢是一个逐步过程。已经计算了分子内和分子间的脱氢途径。整个分子内脱氢过程是7.4 kcal / mol的能级运动,而分子间脱氢是一个正负电子的过程。分子内脱氢的溶剂化自由能垒分别为14.1和7.9 kcal / mol,低于分子间脱氢途径的溶剂化自由能垒(分别为24.1和9.2 kcal / mol)。这些结果表明分子内途径在动力学和能量上均是优选的。生成的单体氨基硼烷物质Me2NBH2可能会发生二聚反应,形成环状(Me2N-BH2)(2),这是通过实验观察到的。

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