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Efficient Hydrogenolysis of Alkanes at Low Temperature and Pressure Using Tantalum Hydride on MCM-41, and a Quantum Chemical Study

机译:在MCM-41上使用钽氢化物的低温和压力在低温和压力下高效氢解,以及量子化学研究

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Hydrogenolysis of hydrocarbons is of considerable technological importance for applications such as the hydroprocessing of petrochemical feedstocks to generate high-value and useful chemicals and fuels. We studied the catalytic activity of tantalum hydride supported on MCM-41 for the hydrogenolysis of alkanes at low temperature and low atmospheric pressure in a dynamic reactor. The reactions proceed with good turnover numbers, and the catalyst could be reused for several times, which makes the overall catalytic process sustainable. We derived the plausible mechanism by using DFT calculations and identified the preferred pathways by the analysis of potential energy surface. Our results and the proposed reaction mechanism demonstrate the viability of the catalyst-by-design approach.
机译:烃的氢解聚溶解对于诸如石化原料的加氢处理,以产生高价值和有用的化学品和燃料等应用具有相当大的技术重要性。 我们研究了在MCM-41上负载的钽氢化物的催化活性在低温下在低温下氢化烷烃和动态反应器中的低大气压。 反应进行良好的营业额数,催化剂可以重复使用几次,这使得整体催化过程可持续。 我们通过使用DFT计算来衍生合理的机制,并通过分析潜在的能量表面来鉴定优选的途径。 我们的结果和所提出的反应机制证明了催化剂 - 逐设计方法的可行性。

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