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无金属材料作为乙炔氢氯化反应催化剂的现状与展望:活性位点、掺杂剂及作用机制

Current status and perspective of metal-free materials as catalysts in acetylene hydrochlorination: active site, dopant, and mechanism.

作者信息

Wang HuiJie, Shang LingLing, Wang BaiRan, Sun XiaoYing, Li Bo

机构信息

Institute of Catalysis for Energy and Environment, College of Chemistry and Chemical Engineering, Shenyang Normal University, Shenyang 110034, China.

出版信息

Chem Commun (Camb). 2025 May 15;61(41):7368-7383. doi: 10.1039/d4cc06830k.

Abstract

Acetylene hydrochlorination is one of the main catalytic routes for vinyl chloride monomer (VCM) production, in particular for coal-rich regions, with mercury or noble metal chlorides as conventional catalysts. In recent years, there is a fast-growing transition from metal-based catalysts to metal-free materials for acetylene hydrochlorination because of strict environmental regulation and strong motivation for sustainable development, and this trend is clearly exemplified in a series of studies on carbon, boron nitride, graphitic carbon nitride, and ionic liquids, which garnered significant interest as catalysts in acetylene hydrochlorination. In this review, the current status and development of these metal-free catalysts are summarized with a focus on the nature of active sites, doping effects, reaction mechanism, and optimization methods, in order to provide a timely account. For carbon materials, the essential role of nitrogen dopants in catalytic performance is elaborated and possible active nitrogen species are explored, and the dual dopant strategy is discussed in the frame of synergetic effects which could further boost the activity and stability. For the other metal-free materials, they exhibited a different pattern regarding reactant adsorption and reaction mechanism from the carbon catalysts, in particular a dual-site mechanism is found due to the balanced adsorption between HCl and CH. For each metal-free material, a short discussion is provided at the end of the section to shed light on the unique property which uncovered the difference from not only conventional metal catalysts but also the other metal-free materials. In the end, the key issues preventing the further improvements of metal-free catalysts and the practical way to replace metal catalysts are discussed. Overall, the current work paves the way for the future development of metal-free catalysts for acetylene hydrochlorination.

摘要

乙炔氢氯化是生产氯乙烯单体(VCM)的主要催化路线之一,特别是在富煤地区,传统催化剂为汞或贵金属氯化物。近年来,由于严格的环境法规和可持续发展的强烈动机,乙炔氢氯化反应的催化剂正迅速从金属基催化剂向无金属材料转变,这一趋势在一系列关于碳、氮化硼、石墨相氮化碳和离子液体的研究中得到了明显体现,这些材料作为乙炔氢氯化反应的催化剂引起了广泛关注。在这篇综述中,总结了这些无金属催化剂的现状和发展,重点关注活性位点的性质、掺杂效应、反应机理和优化方法,以便及时进行阐述。对于碳材料,详细阐述了氮掺杂剂在催化性能中的关键作用,探索了可能的活性氮物种,并在协同效应的框架内讨论了双掺杂策略,这可以进一步提高活性和稳定性。对于其他无金属材料,它们在反应物吸附和反应机理方面表现出与碳催化剂不同的模式,特别是由于HCl和CH之间的平衡吸附发现了双位点机理。对于每种无金属材料,在该部分末尾进行了简短讨论,以阐明其独特性质,该性质不仅揭示了与传统金属催化剂的差异,还揭示了与其他无金属材料的差异。最后,讨论了阻碍无金属催化剂进一步改进的关键问题以及替代金属催化剂的实际方法。总体而言,当前的工作为乙炔氢氯化无金属催化剂的未来发展铺平了道路。

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