Unique functionalities of carbon shells coating on ZnFe2O4 for enhanced photocatalytic hydroxylation of benzene to phenol

被引:51
作者
Yang, Baoying [1 ]
Zhang, Shikun [1 ]
Gao, Yan [1 ]
Huang, Lianqi [1 ]
Yang, Can [1 ]
Hou, Yidong [1 ]
Zhang, Jinshui [1 ]
机构
[1] Fuzhou Univ, Coll Chem, State Key Lab Photocatalysis Energy & Environm, 2 Xueyuan Rd, Fuzhou 350108, Peoples R China
来源
APPLIED CATALYSIS B-ENVIRONMENT AND ENERGY | 2022年 / 304卷
关键词
Photocatalysis; Phenol production; Hydroxylation reaction; Charge separation; Photo-fenton; HYDROGEN-PEROXIDE; SELECTIVE HYDROXYLATION; DIRECT OXIDATION; PERFORMANCE; NANOPARTICLES; CYCLOHEXANE; DEGRADATION; FRAMEWORKS; NANOTUBES; CATALYSTS;
D O I
10.1016/j.apcatb.2021.120999
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Hydroxylation of benzene to phenol over a photocatalyst is a green approach toward phenol production. ZnFe2O4 (ZFO) with an intrinsic peroxidase-like catalytic behavior toward H2O2 activation is an emerging photocatalyst for benzene hydroxylation reaction; however, its catalytic performance is greatly limited by the fast charge recombination, inevitable metal leaching and hydrophilic surface structure. Herein, the encapsulation of ZFO by carbons (ZFO@C) is an effective solution to address these issues. The carbons conformably coating on ZFO not only protect them from corrosion and metal leaching, but also enable the generation of a strong electronic contact between them to facilitate charge separation. In addition, the carbons also increase the surface affinity for benzene adsorption. As a result, ZFO@C exhibited a significant enhanced photocatalytic activity and durability for phenol synthesis. Furthermore, ZFO@C with carbon derived unique functionalities will have a broad application in photocatalytic green synthesis of fine chemicals.
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页数:9
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