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通过氢亲和力预测的MXenes上轻质烷烃的C-H活化

C-H activation of light alkanes on MXenes predicted by hydrogen affinity.

作者信息

Niu Kaifeng, Chi Lifeng, Rosen Johanna, Björk Jonas

机构信息

Department of Physics, Chemistry and Biology, IFM, Linköping University, 581 83 Linköping, Sweden.

出版信息

Phys Chem Chem Phys. 2020 Sep 7;22(33):18622-18630. doi: 10.1039/d0cp02471f. Epub 2020 Aug 13.

Abstract

C-H activation of light alkanes is one of the most important reactions for a plethora of applications but requires catalysts to operate at feasible conditions. MXenes, a new group of two-dimensional materials, have shown great promise as heterogeneous catalysts for several applications. However, the catalytic activity of MXenes depends on the type and distribution of termination groups. Theoretically, it is desired to search for a relation between the catalytic activity and the termination configuration by employing a simple descriptor in order to avoid tedious activation energy calculations. Here, we show that MXenes are promising for splitting C-H bonds of light alkanes. Furthermore, we present how a quantitative descriptor - the hydrogen affinity - can be used to characterize the termination configuration of TiCT (T = O, OH) MXenes, as well as the catalytic activity towards dehydrogenation reactions, using propane as model system. First-principles calculations reveal that the hydrogen affinity can be considered as an intrinsic property of O and OH terminated TiC MXenes, in which the mean hydrogen affinity for the terminated TiC MXenes is linearly correlated to the statistical average of their OH fraction. In addition, the C-H activation energies exhibit a strong scaling relationship to the hydrogen affinity. This quantity can therefore yield quick predictions of catalytic activity of terminated TiC MXenes towards C-H activations, and even predict their chemical selectivity toward scissoring different C-H bonds. We believe that the hydrogen affinity will accelerate the discovery of further applications of the broad family of MXenes in heterogeneous catalysis.

摘要

轻质烷烃的C-H活化是众多应用中最重要的反应之一,但需要催化剂在可行的条件下运行。MXenes是一类新型二维材料,作为多相催化剂在多种应用中展现出了巨大潜力。然而,MXenes的催化活性取决于端基的类型和分布。从理论上讲,希望通过使用一个简单的描述符来寻找催化活性与端基构型之间的关系,以避免繁琐的活化能计算。在此,我们表明MXenes有望用于裂解轻质烷烃的C-H键。此外,我们展示了如何使用丙烷作为模型体系,用一个定量描述符——氢亲和力来表征TiCT(T = O,OH)MXenes的端基构型以及对脱氢反应的催化活性。第一性原理计算表明,氢亲和力可被视为O和OH端基化TiC MXenes的固有属性,其中端基化TiC MXenes的平均氢亲和力与其OH分数的统计平均值呈线性相关。此外,C-H活化能与氢亲和力呈现出很强的标度关系。因此,这个量可以快速预测端基化TiC MXenes对C-H活化的催化活性,甚至预测它们对不同C-H键裂解的化学选择性。我们相信,氢亲和力将加速发现MXenes大家族在多相催化中的更多应用。

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