苯酚
苯
催化作用
选择性
化学工程
材料科学
分子
化学
光化学
有机化学
工程类
作者
Jijia Xie,Xiyi Li,Jinsong Guo,Lei Luo,Juan J. Delgado,Natalia Martsinovich,Junwang Tang
标识
DOI:10.1038/s41467-023-40160-w
摘要
Abstract Phenol is one of the most important fine chemical intermediates in the synthesis of plastics and drugs with a market size of ca . $30b 1 and the commercial production is via a two-step selective oxidation of benzene, requiring high energy input (high temperature and high pressure) in the presence of a corrosive acidic medium, and causing serious environmental issues 2–5 . Here we present a four-phase interface strategy with well-designed Pd@Cu nanoarchitecture decorated TiO 2 as a catalyst in a suspension system. The optimised catalyst leads to a turnover number of 16,000–100,000 for phenol generation with respect to the active sites and an excellent selectivity of ca . 93%. Such unprecedented results are attributed to the efficient activation of benzene by the atomically Cu coated Pd nanoarchitecture, enhanced charge separation, and an oxidant-lean environment. The rational design of catalyst and reaction system provides a green pathway for the selective conversion of symmetric organic molecules.
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