Easy three steps gC3N4 exfoliation for excellent photocatalytic activity-An in-depth comparison with conventional approaches

被引:13
作者
Abega, Aime Victoire [1 ]
Marchal, Clement [3 ]
Dziurla, Marie-Antoinette [3 ]
Dantio, Nguela Christian Brice [2 ,3 ]
Robert, Didier [3 ]
机构
[1] Univ Douala, Fac Sci, Dept Chem, POB 24157, Douala, Cameroon
[2] Univ Yaounde1, Fac Sci, Dept Inorgan Chem, Lab Appl Phys & Analyt Chem, POB 812, Yaounde, Cameroon
[3] Univ Strasbourg, Inst Chim & Proc Energie Environm & Sante, UMR CNRS 7515, 25 Rue Becquerel, F-67087 Strasbourg, France
关键词
GRAPHITIC CARBON NITRIDE; THERMAL EXFOLIATION; G-C3N4; NANOSHEETS; WATER; ADSORPTION; HETEROJUNCTION; DEGRADATION; TEMPERATURE; PERFORMANCE; MECHANISM;
D O I
10.1016/j.matchemphys.2023.127803
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Producing an ultrathin nanostructure through exfoliation of carbon nitride (gC3N4) significantly enhances the photoactivity of the material. However, the influence of the exfoliation method on the properties and photocatalytic activity of gC3N4 nanosheets is still poorly understood. In this study, conventional methods such as thermal, chemical and ultrasonic exfoliation of gC3N4 nanosheets have been compared with a three-step exfoliation method. The three-step exfoliation strategy allows the control of the microstructure, light absorption property, morphology and visible light photoactivity of gC3N4 nanosheets. Products show a superior photocatalytic efficiency under simulated sunlight compared to gC3N4 nanosheets obtained with conventional exfoliation methods. Degradation kinetics of this material are also superior. gC3N4 nanosheets prepared by three-step exfoliation exhibit a high specific surface area, optimal band gap energy structure, higher electron density and more efficient charge separation than products of conventional exfoliation methods. This new three-step exfoliation strategy is an easy way for obtaining high performance gC3N4 nanosheets for water purification.
引用
收藏
页数:13
相关论文
共 47 条
[31]   Physical adsorption characterization of nanoporous materials: progress and challenges [J].
Thommes, Matthias ;
Cychosz, Katie A. .
ADSORPTION-JOURNAL OF THE INTERNATIONAL ADSORPTION SOCIETY, 2014, 20 (2-3) :233-250
[32]   Influence of synthesis parameters on g-C3N4 polysulfides trapping: A systematic study [J].
Versaci, Daniele ;
Cozzarin, Melina ;
Amici, Julia ;
Francia, Carlotta ;
Leiva, Ezequiel P. M. ;
Visintin, Arnaldo ;
Bodoardo, Silvia .
APPLIED MATERIALS TODAY, 2021, 25
[33]   g-C3N4 quantum dots: direct synthesis, upconversion properties and photocatalytic application [J].
Wang, Wanjun ;
Yu, Jimmy C. ;
Shen, Zhurui ;
Chan, Donald K. L. ;
Gu, Ting .
CHEMICAL COMMUNICATIONS, 2014, 50 (70) :10148-10150
[34]   A metal-free polymeric photocatalyst for hydrogen production from water under visible light [J].
Wang, Xinchen ;
Maeda, Kazuhiko ;
Thomas, Arne ;
Takanabe, Kazuhiro ;
Xin, Gang ;
Carlsson, Johan M. ;
Domen, Kazunari ;
Antonietti, Markus .
NATURE MATERIALS, 2009, 8 (01) :76-80
[35]   A review on g-C3N4-based photocatalysts [J].
Wen, Jiuqing ;
Xie, Jun ;
Chen, Xiaobo ;
Li, Xin .
APPLIED SURFACE SCIENCE, 2017, 391 :72-123
[36]   Functionalized Graphitic Carbon Nitride for Efficient Energy Storage [J].
Wu, Menghao ;
Wang, Qian ;
Sun, Qiang ;
Jena, Puru .
JOURNAL OF PHYSICAL CHEMISTRY C, 2013, 117 (12) :6055-6059
[37]   Photodegradation Performance of g-C3N4 Fabricated by Directly Heating Melamine [J].
Yan, S. C. ;
Li, Z. S. ;
Zou, Z. G. .
LANGMUIR, 2009, 25 (17) :10397-10401
[38]   The ultra-rapid synthesis of 2D graphitic carbon nitride nanosheets via direct microwave heating for field emission [J].
Yu, Yongzhi ;
Zhou, Qing ;
Wang, Jigang .
CHEMICAL COMMUNICATIONS, 2016, 52 (16) :3396-3399
[39]   Exfoliation method matters: The microstructure-dependent photoactivity of g-C3N4 nanosheets for water purification [J].
Zhang, Menglu ;
Yang, Yu ;
An, Xiaoqiang ;
Zhao, Jingjing ;
Bao, Yueping ;
Hou, Li-an .
JOURNAL OF HAZARDOUS MATERIALS, 2022, 424
[40]   A critical review of g-C3N4-based photocatalytic membrane for water purification [J].
Zhang, Menglu ;
Yang, Yu ;
An, Xiaoqiang ;
Hou, Li-an .
CHEMICAL ENGINEERING JOURNAL, 2021, 412