Chin. J. Struct. Chem. 第12期是由华南农业大学李鑫教授、北方民族大学靳治良教授和河海大学敖燕辉教授共同组织的太阳能光催化专刊,共收录8篇文章(1篇 News & Views,6篇Article,1篇Review), 内容涉及: 光催化甲烷氧化偶联、光催化产氢、H2O2及CO2还原等。
感谢作者、编委与审稿专家的大力支持。敬请各位专家和同行阅读分享与批评指正!
2023年 第12期
Editorial
Special Issue for Solar Photocatalysis
Guest editors: Xin Li*, Zhiliang Jin*, Yanhui Ao*
News & Views
1. High efficiency and selectivity catalyst for photocatalytic oxidative coupling of methane
Qijun Tang, Wenguang Tu*, Yong Zhou, Zhigang Zou*. Chin. J. Struct. Chem., 2023, 42, 100170
https://doi.org/10.1016/j.cjsc.2023.100170
Article
2. Fabrication of graphene modified CeO2/g-C3N4 heterostructures for photocatalytic degradation of organic pollutants
Zhi Zhu, Xiaohan Xing, Qi Qi, Wenjing Shen, Hongyue Wu, Dongyi Li, Binrong Li, Jialin Liang, Xu Tang, Jun Zhao, Hongping Li*, Pengwei Huo*. Chin. J. Struct. Chem., 2023, 42, 100194
https://doi.org/10.1016/j.cjsc.2023.100194
N-GO assisted S-scheme CeO2/g-C3N4 catalyst is prepared. The unique S-scheme and the presence of IEF at the interfaces of CeO2 and g-C3N4 maximize the redox ability of photogenerated carriers and the unique Ce4+ →Ce3+ conversion property promotes the charge carrier transfer efficiency, resulting in the outstanding degradation activity.
3. Facilitating efficient photocatalytic hydrogen evolution via enhanced carrier migration at MOF-on-MOF S-scheme heterojunction interfaces through a graphdiyne (CnH2n–2) electron transport layer
Fei Jin, Bolin Yang, Xuanpu Wang, Teng Li, Noritatsu Tsubaki, Zhiliang Jin*. Chin. J. Struct. Chem., 2023, 42, 100198
https://doi.org/10.1016/j.cjsc.2023.100198
Graphdiyne is prepared by cross-coupling method and introduced into the composite photocatalyst. Due to the rapid interfacial electron transfer ability, graphdiyne plays a relay effect to promote the photocatalytic hydrogen evolution reduction ability and photogenerated carrier transfer ability.
4. Interface charge separation in Cu2CoSnS4/ZnIn2S4 heterojunction for boosting photocatalytic hydrogen production
Zhen Shi, Wei Jin, Yuhang Sun, Xu Li, Liang Mao, Xiaoyan Cai*, Zaizhu Lou*. Chin. J. Struct. Chem., 2023, 42, 100201
https://doi.org/10.1016/j.cjsc.2023.100201
A novel 0D/2D Cu2CoSnS4/ZnIn2S4 p-n heterojunction photocatalyst is developed to efficiently generate H2 from water splitting under visible-light irradiation. The internal electric field at Cu2CoSnS4/ZnIn2S4 interface promotes the separation of photogene-rated charges and enables the accumulation of valence band electrons in ZnIn2S4 for fast water reduction reaction.
5. Single-layer crystalline triazine-based organic framework photocatalysts with different linking groups for H2O2 production
Jing Wang, Zhongliao Wang*, Jinfeng Zhang*, Kai Dai*. Chin. J. Struct. Chem., 2023, 42, 100202
https://doi.org/10.1016/j.cjsc.2023.100202
The vertically oriented naphthyl linkage imparts CTF-DCN with unmatched light absorption capabilities, superior efficiency in charge separation, and minimal energy barrier. This unique configuration contributes to the exceptional performance of CTF-DCN in facilitating the generation of H2O2.
6. Effective photocatalytic hydrogen evolution by Ti3C2-modified CdS synergized with N-doped C-coated Cu2O in S-scheme heterojunctions(cover picture)
Kaihui Huang, Boning Feng, Xinghua Wen, Lei Hao, Difa Xu, Guijie Liang*, Rongchen Shen*, Xin Li*. Chin. J. Struct. Chem., 2023, 42, 100204
https://doi.org/10.1016/j.cjsc.2023.100204
The synergistic effects of Ti3C2 MXene and the Cu2O@NC/CdS nanorods S-Scheme charge transfer channels could significantly enhance the charge separation and utilization, thus achieving the improved photocatalytic H2-evolution performance.
7. S doping induces to promoted spatial separation of charge carriers on carbon nitride for efficiently photocatalytic degradation of atrazine
Qiang Zhang, Weiran Gong, Huinan Che, Bin Liu, Yanhui Ao*. Chin. J. Struct. Chem., 2023, 42, 100205
https://doi.org/10.1016/j.cjsc.2023.100205
S-doped carbon nitride is prepared for the efficient degradation of ATZ. The exceptional degradation activity originates from the fact that S atom optimizes electronic structure of carbon nitride, leading to a substantial improvement in the spatial separation and transfer efficiency of photogenerated electrons and holes.
Review
8. Metal halide perovskites quantum dots: Synthesis and modification strategies for solar CO2 conversion
Shu-Ran Xu, Fang-Xing Xiao*. Chin. J. Struct. Chem., 2023, 42, 100173
https://doi.org/10.1016/j.cjsc.2023.100173
An overview of metal halide perovskites quantum dots (MHPs QDs) for photocatalytic CO2 reduction is provided with photocatalytic mechanism clearly elucidated.
往期精彩回顾
磁场辅助微生物腐蚀构筑硫化物修饰的镍铁氢氧化物用于高效析氧
Chin. J. Struct. Chem: 喜迎元旦
2023年第11期目录
能源转化与催化电化学专刊
金属卤化物钙钛矿量子点的合成和改性实现太阳能CO2转化
锂离子电池高电压正极材料的挑战与改性策略
2023年第9期目录
IF 2.2 Chinese Journal of Structural Chemistry(《结构化学》)首次突破2