环己酮
苯酚
催化作用
选择性
化学
介孔材料
溶剂
色散(光学)
化学工程
核化学
有机化学
光学
物理
工程类
作者
Xinhui Shen,Jingwen Yang,Jiuxuan Zhang,Hong Jiang,Yan Du,Rizhi Chen
标识
DOI:10.1021/acs.iecr.2c03785
摘要
Selective phenol hydrogenation is a valuable route to produce cyclohexanone, but it poses a great challenge. Herein, a series of Pd@PC-COFs catalysts were prepared by the wet impregnation with different solvents. The impregnation solvent has a great influence on the microstructures and surface characteristics of the Pd@PC-COFs catalysts and their catalytic properties in the selective phenol hydrogenation to cyclohexanone. The as-prepared Pd@PC-COF-NBA catalyst shows the highest catalytic activity, with a phenol conversion of 98.3% at the cyclohexanone selectivity of 98.9%, which is 5.3 times that of Pd@PC-COF-MeOH and 2.4 times that of Pd@PC-COF-DI. Larger specific surface area, well-developed pore structures, rich mesoporous ratio, higher Pd content and Pd(0) ratio, and improved Pd dispersion are the important reasons for the superior catalytic performance of Pd@PC-COF-NBA. Pd@PC-COF-EA and Pd@PC-COF-Dio exhibit good catalytic stability during five reaction cycles. These findings can aid the development of high-performance Pd@COFs for the selective phenol hydrogenation.
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