1.Enhanced CO2conversion to CO using an Sscheme 2D/2D WO3/InVO4photocatalysts.Yanan Chen, Wenzhuo Xiang, Zizhong Zhang, Tao JiandWenyue Su*Chem. Eng. J.2025,508,160993
2.Construction of a 0D/2D NixP/LaTiO2N Schottky junction photocatalyst for efficient visible-lightdriven photocatalytic CO2reduction.Guoyu Xu,Yanan Chen,Peiling Lin,Zizhong Zhang, Tao Ji andWenyue Su*Catal. Sci. Technol.2025, 15, 2027
3.The hierarchical assembly of ultra-thin polymeric carbon nitride nanosheet on LaOBr for enhanced photocatalytic overall water splitting.Zheng Zhang, Linqi Shen, Yuan Lin, Tao Ji,Wenyue Su*J. Colloid Interface Sci.2025,691,137383
4.Carbon-coated Cd0.9Zn0.1S for photocatalytic oxidation of benzyl alcohol to hydrobenzoin and H2.Lichao Lin, Xiumei Li,Zizhong Zhang,Yongfan Zhang,Jinni Shen,Tao Ji,Wenyue Su*Chem. Eng. J.2025,520,166167
5.Construction of a 2D@0D InVO4@MnWO4S-scheme for efficient photocatalytic reduction of CO2to CO.Wenzhuo Xiang,Guoyu Xu, Lujiang Xiao,Zizhong Zhang, Tao Ji andWenyue Su *New J. Chem.2025, 49, 3751
6.Anchoring MnWO4Nanorods on LaTiO2N Nanoplates for Boosted Visible Light-Driven Overall CO2Reduction.Jinwei Qi, Zheng Zhang, Lingqian Zhang, Xianzhi Fu, Tao Ji, andWenyue Su*ACS Appl. Mater. Interfaces2024, 16, 47741−47750
7.Zinc-vacancy mediated Z-scheme photocatalyst of ZnS/LaTiO2N for hydrogen evolution under visible-light.Jiaqi Yu, Jinwei Qi, Nansong Lin, Zizhong Zhang, Tao JiandWenyue Su* J. Alloys Compd.2024,976,173301
8.A direct Z-scheme Bi2WO6/La2Ti2O7photocatalyst for selective reduction of CO2to CO.Jianxiong Chen, Lichao Lin, Peiling Lin, Lujiang Xiao, Lingqian Zhang, Ying LuandWenyue Su *Chin. J. Struct. Chem.2023,42,100010
9.Construction of a direct Z-scheme InVO4/La2Ti2O7photocatalyst toward efffcient and selective CO2reduction to CO.Lujiang Xiao, Lichao Lin, Jia Song, Zizhong Zhang, Xuxu Wang,Wenyue Su⁎J. Alloys Compd.2023,935,168086
10.Boosting the photocatalytic activity and stability of Cu2O for CO2conversion by LaTiO2N.Lichao Lin, Peiling Lin, Jia Song, Zizhong Zhang, Xuxu Wang, Wenyue Su*J. Colloid Interface Sci.2023,630,352–362
11.Dual-functional photocatalyst of CoSx/Cd0.7Zn0.3S without noble metals for efficient selective benzaldehyde synthesis coupled with H2production.Xinan Chen, Jiaqi Yu,Zifan Zhang,Zizhong Zhang, Tao JiandWenyue Su*Catal. Sci. Technol.2023, 13, 6291
12.Anchoring 0D CeO2Nanoparticles on 2D LaTiO2N Nanosheets for Efficient Visible-Light-Driven Photocatalytic CO2Reduction.Peiling Lin, Lujiang Xiao, Ying Lu, Zizhong Zhang, Xuxu Wang andWenyue Su* ChemCatChem2022, 14, e202201041
13.Cooperative hydrogen production and C-C coupling organic synthesis in one photoredox cycle.Jing Wang, Ming-Yu Qi, Xuxu Wang,Wenyue Su* Applied Catalysis B: Environmental2022, 313, 121440
14.In situ growth of crystalline carbon nitride on LaOCl for photocatalytic overall water splitting.Yuan Lin, Xuxu Wang, Xianzhi Fu andWenyue Su*,Journal of Materials Chemistry A2022, 10, 8252–8257
15.Construction of a 2D/2D WO3/LaTiO2N Direct Z‑Scheme Photocatalyst for Enhanced CO2Reduction Performance Under Visible Light.Nansong Lin, Yuan Lin, Xinjia Qian, Xuxu Wang, andWenyue Su*ACS Sustainable Chem. Eng.2021, 9, 13686-13694
16.CuxO modified La2Sn2O7photocatalyst with enhanced photocatalytic CO2reduction activity.Xinjia Qian, Lingqian Zhang, Yuan Lin, Mengdi Wang, Xuxu Wang andWenyue Su*Applied Surface Science2021, 568, 150985
17.A direct Z-scheme α-Fe2O3/LaTiO2N visible-light photocatalyst for enhanced CO2reduction activity.Jia Song, Ying Lu, Yuan Lin, Qianwen Liu, Xuxu WangandWenyue Su* Applied Catalysis B: Environmental2021, 292, 120185
18.In situ α-Fe2O3modified La2Ti2O7with enhanced photocatalytic CO2reduction activity.Zifan Zhang, Yuan Lin, Qianwen Liu, Xuxu Wang, Xianzhi Fu andWenyue Su* Catal. Sci. Technol.2021, 11, 6438
19.Simultaneous enhancements in photoactivity and anti-photocorrosion of Zscheme Mn0.25Cd0.75S/WO3for solar water splitting.Jing Wang, Yanan Zhang, Xuxu Wang,Wenyue Su* Applied Catalysis B: Environmental2020,268 118444
20.Accelerating charge transfer for highly efficient visible-light-driven photocatalytic H2production: In-situ constructing Schottky junction via anchoring Ni-P alloy onto defect-rich ZnS.Simeng Zhu, Xinjia Qian, Dongping Lan, Zhiyang Yu, Xuxu Wang,Wenyue Su* Applied Catalysis B: Environmental2020,269,118806
21.Zn defect-mediated Z-scheme electron-hole separation in AgIn5S8/ZnS heterojunction for enhanced visible-light photocatalytic hydrogen evolution.Simeng Zhu, Yanan Zhang, Xinjia Qian, Xuxu Wang,Wenyue Su* Applied Surface Science2020,504,144396
22.Efficient self-assembly synthesis of LaPO4/CdS hierarchical heterostructure with enhanced visible-light photocatalytic CO2reduction.Bao Pan, Jiani Qin, Xuxu Wang,Wenyue Su* Applied Surface Science2020,504,144379
23.Ni(OH)2modified Mn0.5Cd0.5S with efficient photocatalytic H2evolution activity under visible-light.Yanan Zhang, Jing Wang, Nan Xu, Xuxu Wang,Wenyue Su* International Journal of Hydrogen Energy2020, 45, 21532-21539
24.LaOCl-Coupled Polymeric Carbon Nitride for Overall Water Splitting through a One-Photon Excitation Pathway.Yuan Lin,Wenyue Su*, Xuxu Wang, Xianzhi Fu, and Xinchen Wang*Angew. Chem. Int. Ed.2020, 59, 20919–20923
25.In situ photodeposition of amorphous NixP on CdS nanorods for efficient visible-light photocatalytic H2generation.Simeng Zhu, Jing Wang, Yishan He, Zhiyang Yu, Xuxu Wang andWenyue Su*Catalysis Science & Technology2019, 9, 5394
26.Cobalt lactate complex as a hole cocatalyst for significantly enhanced photocatalytic H2production activity over CdS nanorods.Lu Wang, Nan Xu, Xiaoyang Pan, Yishan He, Xuxu Wang andWenyue Su* Catalysis Science & Technology2018, 8(6): 1599-1605
27.An amorphous CoSxmodified Mn0.5Cd0.5S solid solution with enhanced visible-light photocatalytic H2-production activity.Mengdi Wang, Qianwen Liu, Nan Xu, Ningxi Su, Xuxu Wang andWenyue Su* Catalysis Science & Technology2018, 8, 4122-4128
28.Photochemical route for synthesizing Co–P alloy decorated ZnIn2S4with enhanced photocatalytic H2production activity under visible light irradiation.Qianwen Liu, Mengdi Wang, Yishan He, Xuxu Wang andWenyue Su* Nanoscale2018, 10, 19100-19106
29.Self-assembly synthesis of LaPO4hierarchical hollow spheres with enhanced photocatalytic CO2-reduction performance.Bao Pan, Yangen Zhou,Wenyue Su*, Xuxu Wang*Nano Research2017, 10(2): 534-545
30.La2Sn2O7enhanced photocatalytic CO2reduction with H2O by deposition of Au co-catalyst.Shuang Chen, Bao Pan, Longquan Zeng, Shijian Luo, Xuxu Wang andWenyue Su* RSC Advances2017, 7(23): 14186-14191
31.Enhanced visible light photocatalytic H2evolution over CeO2loaded with Pt and CdS.Daotong You, Bao Pan, Yishan He, Xuxu Wang,Wenyue Su* Research on Chemical Intermediates2017, 43(9): 5103-5112
32.CdS nanoparticles/CeO2nanorods composite with high-efficiency visible-light-driven photocatalytic activity.Daotong You, Bao Pan, Fan Jiang, Yangen Zhou,Wenyue Su* Applied Surface Science2016, 363: 154-160
33.Enhanced photocatalytic CO2conversion over LaPO4by introduction of CoCl2as a hole mediator.Bao Pan, Yangen Zhou,Wenyue Su*and Xuxu WangRSC Advances2016, 6(41): 34744-34747
34.Visible light photocatalytic H2-production activity of epitaxial Cu2ZnSnS4/ZnS heterojunction.Fan Jiang, Bao Pan, Daotong You, Yangen Zhou, Xuxu Wang,Wenyue Su* Catalysis Communications2016, 85: 39-43
35.Hollow click-based porous organic polymers for heterogenization of [Ru(bpy)3]2+through electrostatic interactions.Liuyi Li, Caiyan Cui,Wenyue Su*, Yangxin Wang, Ruihu Wang*Nano Research2016, 9(3): 779-786
36.Photocatalytic CO2reduction with H2O over LaPO4nanorods deposited with Pt cocatalyst.Bao Pan, Shijian Luo,Wenyue Su*, Xuxu Wang*Applied Catalysis B: Environmental2015, 168: 458-464