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氮化硼材料作为轻质烷烃氧化脱氢的新兴催化剂。

Boron nitride materials as emerging catalysts for oxidative dehydrogenation of light alkanes.

作者信息

Xu Chenyang, Ge Cong, Sun Dandan, Fan Yining, Wang Xue-Bin

机构信息

National Laboratory of Solid State Microstructures (NLSSM), Collaborative Innovation Center of Advanced Microstructures, College of Engineering and Applied Sciences, Nanjing University (NJU), Nanjing, 210093, People's Republic of China.

Key Laboratory of Mesoscopic Chemistry of MOE, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, People's Republic of China.

出版信息

Nanotechnology. 2022 Aug 3;33(43). doi: 10.1088/1361-6528/ac7c23.

Abstract

Light olefins (C-C) play a crucial role as basic ingredients in chemical industry, and oxidative dehydrogenation (ODH) of light alkanes to olefins has been one of the popular routes since the shale gas revolution. ODH of light alkanes has advantages on energy-and-cost saving as compared with traditional direct dehydrogenation, but it is restricted by its overoxidation which results in the relatively low olefin selectivity. Boron nitride (BN), an interesting nanomaterial with an analogous structure to graphene, springs out and manifests the superior performance as advanced catalysts in ODH, greatly improving the olefin selectivity under high alkane conversion. In this review, we introduce BN nanomaterials in four dimensions together with typical methods of syntheses. Traditional catalysts for ODH are also referred as comparison on several indicators-olefin yields and preparation techniques, including the metal-based catalysts and the non-metal-based catalysts. We also surveyed the BN catalysts for ODH reaction in recent five years, focusing on the different dimensions of BN together with the synthetic routes accounting for the active sites and the catalytic ability. Finally, an outlook of the potential promotion on the design of BN-based catalysts and the possible routes for the exploration of BN-related catalytic mechanisms are proposed.

摘要

轻质烯烃(C-C)作为化学工业的基础原料发挥着关键作用,自页岩气革命以来,轻质烷烃氧化脱氢(ODH)制烯烃一直是热门路线之一。与传统的直接脱氢相比,轻质烷烃的ODH在节能和成本方面具有优势,但由于其过度氧化导致烯烃选择性相对较低而受到限制。氮化硼(BN)是一种有趣的纳米材料,其结构与石墨烯类似,脱颖而出并在ODH中作为先进催化剂表现出优异性能,在高烷烃转化率下大大提高了烯烃选择性。在这篇综述中,我们从四个维度介绍了BN纳米材料以及典型的合成方法。还将传统的ODH催化剂作为烯烃产率和制备技术等几个指标的对比,包括金属基催化剂和非金属基催化剂。我们还调查了近五年用于ODH反应的BN催化剂,重点关注BN的不同维度以及解释活性位点和催化能力的合成路线。最后,对基于BN的催化剂设计的潜在促进作用以及探索BN相关催化机制的可能途径提出了展望。

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