Opening book details…
About this book
Constructing electrostatic self-assembled 2D/2D ultra-thin ZnIn2S4/protonated g-C3N4 heterojunctions for excellent photocatalytic performance under visible light by Hongcen Yang & Ruya Cao & Pengxiao Sun & Jiangmei Yin & Shouwei Zhang & Xijin Xu is a book available to read on EtoBox.
- Author
- Hongcen Yang & Ruya Cao & Pengxiao Sun & Jiangmei Yin & Shouwei Zhang & Xijin Xu
- Publisher
- Elsevier
- Published
- 2019
- Language
- EN
More by Hongcen Yang & Ruya Cao & Pengxiao Sun & Jiangmei Yin & Shouwei Zhang & Xijin Xu
Browse all works by Hongcen Yang & Ruya Cao & Pengxiao Sun & Jiangmei Yin & Shouwei Zhang & Xijin Xu
Similar books
- Preparation of 2D/2D g-C3N4 nanosheet@ZnIn2S4 Nanoleaf Heterojunctions with Well-designed High-speed Charge Transfer Nanochannels Towards High-efficiency Photocatalytic Hydrogen Evolution — Bo Lin & He Li & Hua An & Wenbin Hao & JinJia Wei & Yanzhu Dai & Chuansheng Ma & Guidong Yang (2017)
- Three-dimensional Network Structure Assembled by g-C3N4 Nanorods for Improving Visible-light Photocatalytic Performance — Wenjiao Luo & Xianjie Chen & Zhen Wei & Di Liu & Wenqing Yao & Yongfa Zhu (2019)
- Synthesis and Characterization of g-C3N4/Bi2MoO6 Heterojunctions with Enhanced Visible Light Photocatalytic Activity — Haiping Li & Jingyi Liu & Wanguo Hou & Na Du & Renjie Zhang & Xutang Tao (2014)
- Covalently Bonded 2D/2D O-g-C3N4/TiO2 Heterojunction for Enhanced Visible-light Photocatalytic Hydrogen Evolution — Ruyi Zhong & Zisheng Zhang & Huqiang Yi & Lei Zeng & Chao Tang & Limin Huang & Meng Gu (2018)
- 0D (MoS2)/2D (g-C3N4) Heterojunctions in Z-scheme for Enhanced Photocatalytic and Electrochemical Hydrogen Evolution — Yazi Liu & Huayang Zhang & Jun Ke & Jinqiang Zhang & Wenjie Tian & Xinyuan Xu & Xiaoguang Duan & Hongqi Sun & Moses O Tade & Shaobin Wang (2018)
- Towards the Prominent Cocatalytic Effect of Ultra-small CoP Particles Anchored on g-C3N4 Nanosheets for Visible Light Driven Photocatalytic H2 Production — Bing Luo & Rui Song & Jiafeng Geng & Xiaohe Liu & Dengwei Jing & Menglong Wang & Cheng (2019)