Wang Ting, Jiang Zhao, Tang Qi, Wang Bolin, Wang Saisai, Yu Mingde, Chang Renqin, Yue Yuxue, Zhao Jia, Li Xiaonian
Industrial Catalysis Institute of Zhejiang University of Technology, Hangzhou, 310014, People's Republic of China.
School of Chemical Engineering, Northeast Electric Power University, Jilin, 132012, China.
Commun Chem. 2022 Jan 10;5(1):2. doi: 10.1038/s42004-021-00619-7.
Vinyl chloride, the monomer of polyvinyl chloride (PVC), is industrially synthesized via acetylene hydrochlorination. Thereby, easy to sublimate but toxic mercury chloride catalysts are widely used. It is imperative to find environmentally friendly non-mercury catalysts to promote the green production of PVC. Low-cost copper-based catalysts are promising candidates. In this study, phosphorus-doped Cu-based catalysts are prepared. It is shown that the type of phosphorus configuration and the distribution on the surface of the carrier can be adjusted by changing the calcination temperature. Among the different phosphorus species, the formed P-C bond plays a key role. The coordination structure formed by the interaction between P-C bonds and atomically dispersed Cu species results in effective and stable active sites. Insights on how P-C bonds activate the substrate may provide ideas for the design and optimization of phosphorus-doped catalysts for acetylene hydrochlorination.
氯乙烯是聚氯乙烯(PVC)的单体,工业上通过乙炔氢氯化反应合成。因此,易于升华但有毒的氯化汞催化剂被广泛使用。寻找环境友好的非汞催化剂以促进PVC的绿色生产势在必行。低成本的铜基催化剂是很有前景的候选者。在本研究中,制备了磷掺杂的铜基催化剂。结果表明,通过改变煅烧温度可以调节磷的构型类型及其在载体表面的分布。在不同的磷物种中,形成的P-C键起着关键作用。P-C键与原子分散的铜物种之间相互作用形成的配位结构产生了有效且稳定的活性位点。关于P-C键如何活化底物的见解可能为乙炔氢氯化磷掺杂催化剂的设计和优化提供思路。