Quasi-MOF derivative-based electrode for efficient electro-Fenton oxidation
Pei Dong(China University of Petroleum, East China), Hongqi Sun(Nanjing Forestry University), Chaocheng Zhao(China University of Petroleum, Beijing), Shuaijun Wang(Jiangsu University), Feifei Lin(China University of Petroleum, East China), Shaobin Wang(University of North Carolina at Chapel Hill), Wenjing Liu(Chinese Academy of Sciences), Yang Wang(China University of Petroleum, Beijing), Jinqiang Zhang(The University of Adelaide), Haolong Wang(China University of Petroleum, East China), Yongqiang Wang(Baotou Central Hospital), Xiaoguang Duan(The University of Adelaide)
Cited by 96
Related Papers
MIL-101(Fe)/g-C3N4 for enhanced visible-light-driven photocatalysis toward simultaneous reduction of Cr(VI) and oxidation of bisphenol A in aqueous media
|Applied Catalysis B: Environmental|2020|483
Rational Catalyst Design for N<sub>2</sub> Reduction under Ambient Conditions: Strategies toward Enhanced Conversion Efficiency
|ACS Catalysis|2020|401
Hollow carbon nanobubbles: monocrystalline MOF nanobubbles and their pyrolysis
|Chemical Science|2017|368
0D (MoS2)/2D (g-C3N4) heterojunctions in Z-scheme for enhanced photocatalytic and electrochemical hydrogen evolution
|Applied Catalysis B: Environmental|2018|353