Why the hydrothermal fluorinated method can improve photocatalytic activity of carbon nitride

被引:1
作者
Gang Zhao
Yupeng Xing
Shuhua Hao
Xijin Xu
Wenxuan Ma
Jinghua Guo
机构
[1] LaboratoryofFunctionalMicroandNanoMaterialsandDevices,SchoolofPhysicsandTechnology,UniversityofJinan
关键词
D O I
暂无
中图分类号
O643.36 [催化剂]; O644.1 [光化学];
学科分类号
081705 ; 070304 ; 081704 ;
摘要
Carbon nitride(CN) photocatalysts have attracted much attention due to their excellent photocatalytic properties.And hydrothermal fluorination is a common method to improve the photocatalytic effect of CN photocatalyst.Here,the influence of the band gap was first revealed of fluorination and hydroxylation of CN photocatalyst based on the first theoretical principle.Here,the effect of fluorination and hydroxylation on the CN band gap was discussed for the first time using the first theoretical principle.With F atoms and OH doping,the band gap of CN was significantly improved,conduction band and valence band moved up.Then,F-CN photocatalyst with F atoms and OH was successfully synthesized by a hydrothermal fluorinated method.Next,the reasons why F-CN photocatalyst was more effective than that of traditional CN photocatalyst were fully discussed.From the photocatalytic effect of photocatalyst(12,593.2 μmolg-1 h-1 to the morphology(super-small nanosheets),structure(homojunctions),composition(metal-free),specific surface area(54.1 m2/g),visible light absorption response(AQE is10.9% at 420 nm) and photo-induced carrier life(14.13 ns).Therefore,this work has a great guiding effect on the development of CN photocatalyst.
引用
收藏
页码:277 / 281
页数:5
相关论文
共 38 条
[1]   设计p-n同质结构实现碳氮光催化剂的全解水性能(英文) [J].
赵刚 ;
郝树华 ;
郭静华 ;
邢钰鹏 ;
张雷 ;
徐锡金 .
Chinese Journal of Catalysis, 2021, 42 (03) :501-509
[2]   g-C3N4界面改性:掺杂金属硫化物构建新型异质结光催化剂的能源转换展望(英文) [J].
任亦杰 ;
曾德乾 ;
WeeJun Ong .
催化学报, 2019, 40 (03) :289-319
[3]   镍基光催化产氢助催化剂(英文) [J].
沈荣晨 ;
谢君 ;
向全军 ;
陈小波 ;
江吉周 ;
李鑫 .
Chinese Journal of Catalysis, 2019, 40 (03) :240-288
[4]   可控设计Zn-Ni-P修饰g-C3N4催化剂光催化产氢性能(英文) [J].
李彦兵 ;
靳治良 ;
张利君 ;
樊凯 .
催化学报, 2019, 40 (03) :390-402
[5]   双助剂促进g-C3N4光解水制氢性能(英文) [J].
李纵 ;
马永宁 ;
胡晓云 ;
刘恩周 ;
樊君 .
Chinese Journal of Catalysis, 2019, 40 (03) :434-445
[6]  
Self-template synthesis of double-layered porous nanotubes with spatially separated photoredox surfaces for efficient photocatalytic hydrogen production[J]. Yani Xin,Yi Huang,Kui Lin,Yifu Yu,Bin Zhang.Science Bulletin. 2018(10)
[7]   Semiconductor-to-Metal-like Behavior of Si with Dopant Concentration.An Electrochemical Investigation and Illustration with Surface Hydride Formation and Hydrogen Evolution Reaction [J].
Priyadarshani, Divya ;
Leuaa, Pradipkumar ;
Maurya, Rajan ;
Kottantharayil, Anil ;
Neergat, Manoj .
JOURNAL OF PHYSICAL CHEMISTRY C, 2020, 124 (37) :19990-19999
[8]   Fabrication of a ternary carbon dots/CoO/g-C3N4 nanocomposite photocatalyst with enhanced visible-light-driven photocatalytic hydrogen production [J].
Shi, Weilong ;
Wang, Jingbo ;
Yang, Shuang ;
Lin, Xue ;
Guo, Feng ;
Shi, Junyou .
JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2020, 95 (08) :2129-2138
[9]  
Strongly coupled 2D-2D nanojunctions between P-doped Ni 2 S (Ni 2 SP) cocatalysts and CdS nanosheets for efficient photocatalytic H 2 evolution[J] . Doudou Ren,ZiZhan Liang,Yun Hau Ng,Peng Zhang,Quanjun Xiang,Xin Li.Chemical Engineering Journal . 2020 (C)
[10]  
Design of a p?¢????n heterojunction in 0D/3D MoS2/g-C3N4 composite for boosting the efficient separation of photogenerated carriers with enhanced visible-light-driven H2 evolution[J] . Biao Zhou,Bo Yang,Muhammad Waqas,Ke Xiao,Caizhen Zhu,Ling Wu.RSC Advances . 2020 (33)