CJSC光催化文章集锦

文摘   2024-12-25 16:39   福建  

点击蓝字 关注我们

光催化专辑 

光催化技术在能源转换与环境修复领域发挥着举足轻重的作用。它巧妙利用太阳能,将其转化为化学能或电能,为清洁能源生产开辟新路径,同时在污染物治理方面也展现出巨大潜力,是实现可持续发展的关键力量。


2023—2024 年度,Chinese Journal of Structural Chemistry (CJSC)刊载了一系列光催化领域前沿研究成果,内容涵盖光催化二氧化碳还原、氢气产生、有机污染物降解、甲烷氧化耦合等多个重要应用方向,深入探讨了多种催化剂体系和材料的设计、制备与性能优化。研究人员通过精心设计实验,深入剖析反应机理,为提升光催化效率、增强催化剂稳定性提供了创新思路与有效方法。


本光催化专辑全面呈现这些研究成果,旨在为光催化领域的科研人员提供有价值的参考,欢迎各位老师阅读并参考。

1. A direct Z-scheme Bi2WO6/La2Ti2O7 photocatalyst for selective reduction of CO2 to CO

Jianxiong Chen, Lichao Lin, Peiling Lin, Lujiang Xiao, Lingqian Zhang, Ying Lu, Wenyue Su*

Chin. J. Struct. Chem., 2023, 42(4), 100010

原文链接

https://doi.org/10.1016/j.cjsc.2022.100010

2.  Identification of photochemical effects in Ni-based photothermal catalysts

Yuyao Xi, Mujin Cai, Zhiyi Wu, Zhijie Zhu, Jiahui Shen, Chengcheng Zhang, Rui Tang, Xingda An*, Chaoran Li*, Le He*

Chin. J. Struct. Chem., 2023, 42(6), 100071

原文链接

https://doi.org/10.1016/j.cjsc.2023.100071

3. UiO-66 framework equipped with cadmium-thiocatecholato moieties as photocatalyst bearing stable active sites and intrinsic photosensitizing units for hydrogen evolution reaction

Gui-Qi Lai, Zhixin Jiang, Hao Zhong, Lai-Hon Chung*, Ning Li, Jun He*

Chin. J. Struct. Chem., 2023, 42(6), 100090

原文链接

https://doi.org/10.1016/j.cjsc.2023.100090

4.  Controlled synthesis of MnxCd1−xS for enhanced visible-light driven photocatalytic hydrogen evolution

Yuxin Sun, Ye Li, Jiajia He, Liuyun Chen, Hongbing Ji, Zuzeng Qin, Tongming Su*

Chin. J. Struct. Chem., 2023, 42(8), 100145

原文链接

https://doi.org/10.1016/j.cjsc.2023.100145

5. Plasmonic photocatalysis: Mechanism, applications and perspectives

Tian Wang, Hong-Jia Wang, Jia-Sheng Lin, Jing-Liang Yang, Fan-Li Zhang*, Xiu-Mei Lin*, Yue-Jiao Zhang, Shangzhong Jin, Jian-Feng Li*

Chin. J. Struct. Chem., 2023, 42(9), 100066

原文链接

https://doi.org/10.1016/j.cjsc.2023.100066

6.  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(12), 100170

原文链接

https://doi.org/10.1016/j.cjsc.2023.100170

7. 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(12), 100194

原文链接

https://doi.org/10.1016/j.cjsc.2023.100194

8. 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(12), 100198

原文链接

https://doi.org/10.1016/j.cjsc.2023.100198

9.  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(12), 100201

原文链接

https://doi.org/10.1016/j.cjsc.2023.100201

10. 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(12), 100202

原文链接

https://doi.org/10.1016/j.cjsc.2023.100202

11. Effective photocatalytic hydrogen evolution by Ti3C2-modified CdS synergised with N-doped C-coated Cu2O in S-scheme heterojunction

Kaihui Huang, Boning Feng, Xinghua Wen, Lei Hao, Difa Xu, Guijie Liang*, Rongchen Shen*, Xin Li*

Chin. J. Struct. Chem., 2023, 42(12), 100204

原文链接

https://doi.org/10.1016/j.cjsc.2023.100204

12.  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(12), 100205

原文链接

https://doi.org/10.1016/j.cjsc.2023.100205

13.  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(12), 100173

原文链接

https://doi.org/10.1016/j.cjsc.2023.100173

14. In-situ decorated cobalt phosphide cocatalyst on Hittorf's phosphorus triggering efficient photocatalytic hydrogen production

Abiduweili Sikandaier, Yukun Zhu*, Dongjiang Yang*

Chin. J. Struct. Chem., 2024, 43(2), 100242

原文链接

https://doi.org/10.1016/j.cjsc.2024.100242

15.  Morphology and photocatalytic tetracycline degradation of g-C3N4 optimized by the coal gangue

Kai Han, Guohui Dong*, Ishaaq Saeed, Tingting Dong, Chenyang Xiao

Chin. J. Struct. Chem., 2024, 43(2), 100208

原文链接

https://doi.org/10.1016/j.cjsc.2023.100208

16. Recent advances in g-C3N4-based direct Z-scheme photocatalysts for environmental and energy applications

Xiaoming Fu, Haibo Huang, Guogang Tang*, Jingmin Zhang, Junyue Sheng, Hua Tang*

Chin. J. Struct. Chem., 2024, 43(2), 100214

原文链接

https://doi.org/10.1016/j.cjsc.2024.100214

17.  Defect and nanostructure engineering of polymeric carbon nitride for visible-light-driven CO2 reduction

Ziruo Zhou, Wenyu Guo, Tingyu Yang, Dandan Zheng*, Yuanxing Fang, Xiahui Lin*, Yidong Hou, Guigang Zhang, Sibo Wang*

Chin. J. Struct. Chem., 2024, 43(3), 100245

原文链接

https://doi.org/10.1016/j.cjsc.2024.100245

18. Covalent organic frameworks for artificial photosynthetic diluted CO2 reduction

Hong Dong, Feng-Ming Zhang*

Chin. J. Struct. Chem., 2024, 43(7), 100307

原文链接

https://doi.org/10.1016/j.cjsc.2024.100307

19. Tandem catalysis for photoreduction of CO2 into multi-carbon fuels on atomically thin dual-metal phosphochalcogenides

Yuhao Guo, Na Li, Tingjiang Yan*

Chin. J. Struct. Chem., 2024, 43(7), 100320

原文链接

https://doi.org/10.1016/j.cjsc.2024.100320

20. Achieving Ullmann coupling reaction via photothermal synergy with ultrafine Pd nanoclusters supported on mesoporous TiO2

Mengli Xu, Zhenmin Xu*, Zhenfeng Bian*

Chin. J. Struct. Chem., 2024, 43(7), 100305

原文链接

https://doi.org/10.1016/j.cjsc.2024.100305

21. Promoting energy transfer pathway in porphyrin-based sp2 carbon-conjugated covalent organic frameworks for selective photocatalytic oxidation of sulfide

Weixu Li, Yuexin Wang, Lin Li, Xinyi Huang, Mengdi Liu, Bo Gui, Xianjun Lang*, Cheng Wang*

Chin. J. Struct. Chem., 2024, 43(7), 100299

原文链接

https://doi.org/10.1016/j.cjsc.2024.100299

22.  S-scheme heterojunction photocatalyst for H2 evolution coupled with organic oxidation

Bicheng Zhu, Jingsan Xu*

Chin. J. Struct. Chem., 2024, 43(8), 100327

原文链接

https://doi.org/10.1016/j.cjsc.2024.100327

23.  Water reduction by an organic single-chromophore photocatalyst

Kun Tang, Yu-Wu Zhong*

Chin. J. Struct. Chem., 2024, 43(8), 100376

原文链接

https://doi.org/10.1016/j.cjsc.2024.100376

24. Deciphering the structural evolution and real active ingredients of iron oxides in photocatalytic CO2 hydrogenation

Mengjun Zhao, Yuhao Guo, Na Li*, Tingjiang Yan*

Chin. J. Struct. Chem., 2024, 43(8), 100348

原文链接

https://doi.org/10.1016/j.cjsc.2024.100348

25. Heterostructured In2O3/In2S3 hollow fibers enable efficient visible-light driven photocatalytic hydrogen production and 5-hydroxy-methylfurfural oxidation

Ping Lu, Baoyin Du, Ke Liu*, Ze Luo, Abiduweili Sikandaier, Lipeng Diao, Jin Sun, Luhua Jiang*, Yukun Zhu*

Chin. J. Struct. Chem., 2024, 43(8), 100361

原文链接

https://doi.org/10.1016/j.cjsc.2024.100361

26.  In situ monitoring of the spatial distribution of oxygen vacancies at the single-particle level

Bei Li, Zhaoke Zheng*

Chin. J. Struct. Chem., 2024, 43(10), 100331

原文链接

https://doi.org/10.1016/j.cjsc.2024.100331

27. Effect of precursors on the structure and photocatalytic performance of g-C3N4 for NO oxidation and CO2 reduction

Liang Ma, Zhou Li, Zhiqiang Jiang, Xiaofeng Wu*, Shixin Chang, Sónia A.C. Carabineiro*, Kangle Lv*

Chin. J. Struct. Chem., 2024, 43(11), 100416

原文链接

https://doi.org/10.1016/j.cjsc.2024.100416

28. Atomically dispersed low-valent Au on poly(heptazine imide) boosts photocatalytic hydroxyl radical production

Yaxuan Jin, Chao Zhang, Guigang Zhang*

Chin. J. Struct. Chem., 2024, 43(12), 100414

原文链接

https://doi.org/10.1016/j.cjsc.2024.100414

29.  Alkyl-linked TiO2@COF heterostructure facilitating photocatalytic CO2 reduction by targeted electron transport

Jiangqi Ning, Junhan Huang, Yuhang Liu, Yanlei Chen, Qing Niu, Qingqing Lin, Yajun He, Zheyuan Liu, Yan Yu, Liuyi Li*

Chin. J. Struct. Chem., 2024, 43(12), 100453

原文链接

https://doi.org/10.1016/j.cjsc.2024.100453

30. Hydroxyl-enriched hydrous tin dioxide-coated BiVO4 with boosted photocatalytic H2O2 production

Sikai Wu, Xuefei Wang*, Huogen Yu*

Chin. J. Struct. Chem., 2024, 43(12), 100457

原文链接

https://doi.org/10.1016/j.cjsc.2024.100457

31. Charge transfer optimization: Role of Cu-graphdiyne/NiCoMoO4 S-scheme heterojunction and Ohmic junction

Yihu Ke, Shuai Wang, Fei Jin, Guangbo Liu, Zhiliang Jin*, Noritatsu Tsubaki*

Chin. J. Struct. Chem., 2024, 43(12), 100458

原文链接

https://doi.org/10.1016/j.cjsc.2024.100458

32.  Novel visible-light-driven I doped Bi2O2CO3 nano-sheets fabricated via an ion exchange route for dye and phenol removal

Guanyang Zeng, Xingqiang Liu, Liangqiao Wu, Zijie Meng, Debin Zeng*, Changlin Yu*

Chin. J. Struct. Chem., 2024, 43(12), 100462

原文链接

https://doi.org/10.1016/j.cjsc.2024.100462

33.  Preparation of high-efficient donor-π-acceptor system with crystalline g-C3N4 as charge transfer module for enhanced photocatalytic hydrogen evolution

Guixu Pan, Zhiling Xia, Ning Wang*, Hejia Sun, Zhaoqi Guo*, Yunfeng Li*, Xin Li

Chin. J. Struct. Chem., 2024, 43(12), 100463

原文链接

https://doi.org/10.1016/j.cjsc.2024.100463

34.  Design and fabrication of ternary Au/Co3O4/ZnCdS spherical composite photocatalyst for facilitating efficient photocatalytic hydrogen production

Linping Li, Junhui Su, Yanping Qiu, Yangqin Gao, Ning Li*, Lei Ge*

Chin. J. Struct. Chem., 2024, 43(12), 100472

原文链接

https://doi.org/10.1016/j.cjsc.2024.100472

35.  Graphene quantum dot modified Bi2MoO6 nanoflower for efficient degradation of BPA under visible light

Xin Wang, Changzhao Chen*, Qishen Wang, Kai Dai*

Chin. J. Struct. Chem., 2024, 43(12), 100473

原文链接

https://doi.org/10.1016/j.cjsc.2024.100473

36. Sulfur-defective ZnIn2S4 nanosheets decorated by TiO2 nano-sheets with exposed {001} facets to accelerate charge transfer for efficient photocatalytic hydrogen evolution

Xing Xiao, Yunling Jia, Wanyu Hong, Yuqing He, Yanjun Wang, Lizhi Zhao, Huiqin An*, Zhen Yin*

Chin. J. Struct. Chem., 2024, 43(12), 100474

原文链接

https://doi.org/10.1016/j.cjsc.2024.100474

37. Covalent organic frameworks: Synthesis, structures, characterizations and progress of photocatalytic reduction of CO2

Jiaqi Ma, Lan Li, Yiming Zhang, Jinjie Qian, Xusheng Wang*

Chin. J. Struct. Chem., 2024, 43(12), 100466

原文链接

https://doi.org/10.1016/j.cjsc.2024.100466

38. State-of-the-art evolution of g-C3N4-based photocatalytic applications: A critical review

Yanghanbin Zhang, Dongxiao Wen, Wei Sun, Jiahe Peng, Dezhong Yu*, Xin Li*, Yang Qu, Jizhou Jiang*

Chin. J. Struct. Chem., 2024, 43(12), 100469

原文链接

https://doi.org/10.1016/j.cjsc.2024.100469

CJSC电催化文章集锦


CJSC非线性光学文章集锦


Chin. J. Struct. Chem 分子筛催化专刊


太阳能光催化专刊


无机催化专刊


Chin. J. Struct. Chem. 2025年第1期目录


Chin. J. Struct. Chem. 2024年第12期目录


结构化学CJSC
期刊论文目录及相关信息推送;作者、读者、编者和审稿专家间的交流互动。
 最新文章