代表性文章
综述
Xiangchao Meng and Zisheng Zhang*, “Bismuth-based photocatalytic semiconductors: Introduction, challenges and possible approaches”, Journal of Molecular Catalysis A: Chemical 423, 533-549 (2016) (ESI)
Meng Shi, Huiying Yang, Zehui Zhao, Guangmin Ren and Xiangchao Meng*, "Bismuth-based semiconductors applied in photocatalytic reduction processes: Fundamentals, advances and future perspectives", Chemical Communications 59,4274-4287 (2023) (Feature Article, Invited)
Jingdan Zhao, Guangmin Ren and Xiangchao Meng*, “Recent Advances on MOFs for Photocatalytic and Electrocatalytic Nitrogen Reduction to Produce Ammonia” Nano Energy 110109 (2024)
Xiangchao Meng, Zisheng Zhang* and Xingang Li*, “Synergetic Photoelectrocatalytic Reactor for Environmental Remediation: a Review”. Journal of photochemistry and photobiology C: Photochemistry Reviews 24, 83-101 (2015)
Zizhen Li, Xiangchao Meng, and Zisheng Zhang*, “Recent development on MoS2-based photocatalysis: a review”. Journal of photochemistry and photobiology C: Photochemistry Reviews 35, 39-55,(2018) (ESI)
Jianpeng Sun, Zhan Zhao, Jiao Li, Zizhen Li, Zisheng Zhang and Xiangchao Meng*, “Recent Advances in Electrocatalytic Seawater Splitting”, Rare Metals 42, 751-768 (2023)
Xiangchao Meng, Nan Yun and Zisheng Zhang*, “Recent advances of computational photocatalysis: a review”, Canadian Journal of Chemical Engineering 97, 1982-1998 (2019)
光催化材料
Xiangchao Meng and Zisheng Zhang*, “Plasmonic ternary Ag-rGO-Bi2MoO6 composites with enhanced visible light-driven photocatalytic activity” Journal of Catalysis 344, 616-630 (2016)
光反应器
1. Jianyong Zhao, Guangmin Ren, Zizhen Li and Xiangchao Meng*, "Design and experimental analysis of a novel slant-plate photoreactor", AIChE Journal 69(2), e17883 (2023)
2. Xiangchao Meng and Zisheng Zhang*, “Experimental analysis of a photoreactor packed with Pd-BiVO4-coated glass beads”, AIChE Journal 65, 132-139 (2019)
3. Jianyong Zhao and Xiangchao Meng*, "Experimental analysis of a slant perforated mesh-plate photoreactor for water detoxification", Chemosphere 315, 137782 (2023)
电催化
17. Zhan Zhao, Yuanyuan Liu, Yiming Chen, Guangmin Ren, Zizhen Li, Zisheng Zhang, Chunhu Li and Xiangchao Meng*, "Direct natural seawater electrolysis through a photo-induced asym-metric electric field", Journal of the American Chemical Society, 147, 28, 24604–24614 (2025) (OUC website)
16. Zhan Zhao, Jianpeng Sun, Xiang Li, Shiyu Qin, Chunhu Li, Zisheng Zhang, Zizhen Li and Xiangchao Meng*, "Engineering active and robust alloy-based electrocatalyst by rapid Joule-heating toward ampere-level hydrogen evolution", Nature Communications 15:7475, (2024)
15. Jianpeng Sun, Shuai Zhou, Zhan Zhao, Shiyu Qin, Xiangchao Meng*, Chen-Ho Tung, and Li-Zhu Wu*, "Deep reconstruction of Mo-based electrocatalyst for high-performance water/seawater oxidation at ampere-level current density", Energy&Environmental Science, 18, 1952-1962 (2025)
14. Zhan Zhao, Yiming Chen,Yuanyuan Liu, Shiyu Qin, Zizhen Li, Zisheng Zhang and Xiangchao Meng*, "Unveiling In Situ Reconstruction for Dynamically Enhanced Hydrogen Spillover Effect in Electrocatalytic Hydrogen Evolution Process", Advanced Functional Materials (2025)
13. Zhongrui Chen, Jia Liang, Xiaoyue Chen, Tong Li, Jason (Zisheng) Zhang, Zizhen Li* and Xiangchao Meng*, "Synergistic Hydrogen Spillover and Bifunctional Sites: Ru Single-Atom Catalysts for Electrocatalytic Urea Synthesis", Nano Energy 143, 111360 (2025)
12. Zhan Zhao, Tao Shi, Jia Liang, Kelei Huang and Xiangchao Meng*, "In-situ controllable reconstruction of hydrogen spillover channel towards ampere-level hydrogen evolution in alkaline media", Journal of Energy Chemistry, 110, 740-750 (2025)
11. Jianpeng Sun, Zhan Zhao, Zizhen Li, Zisheng Zhang, Rufan Zhang* and Xiangchao Meng*,"Ultrafast Carbothermal Shocking Fabrication of Cation Vacancies-rich Mo Doped Ru Nanoparticles on Carbon Nanotubes for High-Performance Water/Seawater Electrolysis", Journal of Materials Chemistry A 11, 22430-22440 (2023)

10. Jianpeng Sun, Zisheng Zhang and Xiangchao Meng*, "Low-Pt supported on MOF-derived Ni(OH)2 with highly-efficiently electrocatalytic seawater splitting at high current density", Applied Catalysis B:Environmental 331, 122703 (2023)
9. Zhan Zhao, Jianpeng Sun, Zizhen Li, Xiaofeng Xu, Zisheng Zhang, Chunhu Li, Liang Wang and Xiangchao Meng*. “Rapid Synthesis of Efficient Mo-based Electrocatalyst for Hydrogen Evolution Reaction in Alkaline Seawater with 11.28% STH Efficiency”, Journal of Materials Chemistry A 11, 10346-10359 (2023)

8. Jianpeng Sun, Shiyu Qin, Zisheng Zhang, Chunhu Li, Xiaofeng Xu, Zizhen Li and Xiangchao Meng*. “Joule Heating Synthesis of Well Lattice-matched Co2Mo3O8/MoO2 Heterointerfaces with Greatly Improved Hydrogen Evolution Reaction in Alkaline Seawater Electrolysis with 12.4% STH Efficiency”, Applied Catalysis B:Environmental 338, 123015 (2023)

7. Zhan Zhao, Jianpeng Sun, Xiang Li, Zisheng Zhang and Xiangchao Meng*. “Joule Heating Synthesis of NiFe alloy/MoO2 and In-situ Transformed (Ni,Fe)OOH/MoO2 Heterostructure as Effective Complementary Electrocatalysts for Overall Splitting in Alkaline Seawater”, Applied Catalysis B: Environmental 340, 123277 (2024) (ESI)

6. Jianpeng Sun, Shiyu Qin, Zhan Zhao, Zisheng Zhang and Xiangchao Meng*, "Rapid Carbothermal Shocking Fabrication of Iron-Incorporated Molybdenum Oxide with Heterogeneous Spin States for Enhanced Overall Water/Seawater Splitting", Materials Horizons 11, 1199-1211 (2024)
5. Jianpeng Sun, Guangmin Ren, Shiyu Qin, Zhan Zhao, Zizhen Li, Zisheng Zhang, Chunhu Li and Xiangchao Meng*, "Reconstruction Co-O-Mo in Amorphous-crystalline MoOx/Co(OH)2 interface for industry-level active and stable electrocatalytic seawater hydrogen evolution", Nano Energy 121, 109246 (2024)
4. Zhan Zhao, Zizhen Li*, Zisheng Zhang and Xiangchao Meng*, “Fe/P dual-doping NiMoO4 with hollow structure for efficient hydrazine oxidation-assisted hydrogen generation in alkaline seawater”, Applied Catalysis B: Environment and Energy 347, 123805 (2024) (ESI)
3. Xiaoyue Chen, Guangmin Ren, Yaru Wang, Zizhen Li, Zisheng Zhang and Xiangchao Meng*, “Introduction of Element Bi in the P-block Promotes N2 Activation for Efficient Electrocatalytic Nitrogen Reduction to Produce Ammonia”, Applied Catalysis B: Environmental and Energy 355, 124173(2024)
2. Shiyu Qin, Zhan Zhao, Jianpeng Sun, Zisheng Zhang and Xiangchao Meng*, “Fe-NiO/MoO2 and In-situ reconstructed Fe, Mo-NiOOH with enhanced negatively charges of oxygen atoms on the surface for salinity tolerance seawater splitting” Nano Energy 128, 109921 (2024)

1. Zhan Zhao, Xiangchao Meng* et al., “Sulfur-facilitated in-situ deep reconstruction of transition metal molybdates toward superior electrocatalytic oxidation of alkaline seawater” Chem Catalysis 4, 11, 101144 (2024) (Cover)
