代表性论文
22. H.G. Lin, W.Y. Su, Y.H. Tang, J.X. Zong, G.Y. Wu, W.N. Xing*, Solar-driven Tubular Co2(OH)PO4/Carbon Nitride S-Scheme Heterojunctions for Renewable H2 Production and CO2 Reduction to Solar Fuels, Renewable Energy 2026, 275, 126306. (SCI, 一区Top, IF=9.104) 21. W.Y. Su, H.G. Lin, D.H. Zhan, J.X. Zong, G.Y. Wu, W.N. Xing*, Synergistic MOF-on-MOF S-scheme heterojunction for highly efficient peroxomonosulfate activation toward tetracycline degradation, Environmental Research, 2026, 301, 124549. (Nature Index journal, top期刊) 20. Y. Wang (本科生), H.G. Lin, J.X. Zong, M.J. Yu, G.Y. Wu, W.N. Xing*, Interface Design of S-Scheme Co9S8/Flower-like g-C3N4 van der Waals Heterojunction with Enhanced Photocatalytic Hydrogen Production and Tetracycline Hydrochloride Degradation, Chinese Journal of Structural Chemistry, 2026, 45(2), 100798. (SCI,一区, IF=10.504) 19. F.K. Feng (本科生), X.Y. Zhang, X.R. Han, G.Y. Wu, W.N. Xing*, MOFs-Derived Oxygen-Vacancy-Rich Cu-CuxO/TiO2 with Dynamic Redox Cycling for Steering Hole-Driven PMS Activation, Small, 2026, 22, e11722. (SCI,二区Top, IF=13.3) 18. H.G. Lin, X.R. Han, Y.H. Tang, J.X. Zong, G.Y. Wu, W.N. Xing* ,Tannic Acid-Mediated Oxygen Vacancies in Broccoli-like CeO2@Carbon for Enhanced Photocatalytic Peroxymonosulfate Activation toward Tetracycline Degradation, Environmental Research 2026, 288, 123268 (Nature Index journal, top期刊), Hot paper 17. D.H. Zhang, H.G. Lin, J.X. Zong, Y.H. Tang, W.N. Xing*, Constructing π-d Interfacial Conduction Channels in COF-Based S-Scheme Heterojunctions for Efficient Solar-to-H2O2 Conversion, Composites Part B: Engineering, 2026, 309, 113054. (SCI,一区Top, IF=14.505) 16. W.N. Xing, H.G. Lin, W.F. Shao, N. Jian, T. Liu, S.P. Wen*, J.G. Han*, G.Y. Wu *, Heteroatom- and bonded tailored Schottky barrier in Ti₃C₂ MXene/carbon nitride heterojunctions toward efficient photocatalysis, Chemical Engineering Journal 2025, 520, 166126, (SCI, 一区Top, IF=12.798) ESI Highly Cited 15. W.N. Xing, Weifan Shao, Yingfu Li, Huage Lin, Jiangang Han, Luyi Zou*, Ran Jia*, Guangyu Wu *, Rapid Charge Transfer Endowed by Heteroatom Doped Z-Scheme Van Der Waals Heterojunction for Boosting Photocatalytic Hydrogen Evolution, Small 2025, 21, 2412036 (SCI, 二区Top, IF=13.3) 14. X.S. Xu, H.G. Lin, D.H. Zhang, J.G. Han, G.Y. Wu, W.N. Xing*, Energy disorder interface triggering ultrafast exciton dissociation of Z-scheme COF/In2S3 heterojunction enabling prominent H2O2 evolution via accelerated oxygen adsorption, Composites Part B: Engineering, 2025, 306, 112852. (SCI,一区Top, IF=14.505) 13. X.S. Xu, F.K. Feng, Z.T. Wan, Y. Wang, M.J. Yu, X.R. Han,G.Y. Wu, W.N. Xing*, Rapid electron transfer reinforced by interfacial Co-O bonding in MOF/COF hybrids for highly efficient degrade tetracycline by activating peroxymonosulfate. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 689: 133686. ESI Highly Cited 12. W.F. Shao, M.J. Yu, X.S. Xu, X.R. Han, Y.W. Chen, J.G. Han, G.Y. Wu, W.N. Xing *, Design of a single-atom In-N3-S site to modulate exciton behavior in carbon nitride for enhanced photocatalytic performance, Small 2024, 20, 2306567. (SCI, 二区Top, IF=13.3) 11. X.S. Xu, W.F. Shao, G.Y. Tai, M.J. Y, X.R. Han, J.G. Han, G.Y. Wu, W.N. Xing *. Single-atomic Co-N site modulated exciton dissociation and charge transfer on covalent organic frameworks for efficient antibiotics degradation via peroxymonosulfate activation. Separation and Purification Technology 2024, 333,125890. (SCI,一区Top, IF=9.103) 10 K. Cheng (本科生), W.F. Shao, H.T. Li, W. Guo, H.Y. Bian, J.G. Han, G.Y. Wu, W.N. Xing*, Biomass derived carbon dots mediated exciton dissociation in rose flower-like carbon nitride for boosting photocatalytic performance, Industrial Crops Products 2023,192, 116086. (SCI,一区Top) 9. W.N. Xing, F. Ma, Z.J. Li, A. Wang, M.X. Liu, J.G. Han*, G.Y. Wu*, W.G. Tu*, Edge effect-modulated exciton dissociation and charge transfer in porous ultrathin tubular graphitic carbon nitride for boosting photoredox activity. Journal of Materials Chemistry A, 2022, 10, 18333. (SCI,二区, IF=14.511) 8. W.N. Xing, S.M. Yin, W.G Tu, G.Y. Liu, SY. Wu, H.J. Wang, G.Y. Wu*, R. Xu*. Rational synthesis of amorphous iron‐nickel phosphonates for highly efficient photocatalytic water oxidation with nearly 100% yield. Angewandte Chemie International Edition, 2020, 59, 1171-1175 (SCI,一区, IF=17.604, 化学领域顶刊) 7. W.N. Xing, W.G. Tu, M. Ou, S.Y. Wu, S.M. Yin, H.J Wang, G. Chen*, R. Xu*. Anchoring active Pt2+/Pt0 hybrid nanodots with extremely low content on nitrogen vacancies of g-C3N4 for highly efficient photocatalytic H2 evolution, ChemSusChem, 2019, 12, 2029 – 2034 (SCI,二区, IF=8.9) 6. W.N. Xing, W.G. Tu, Z.H. Han, Y.D. Hu, Q.Q. Meng, G. Chen*. Template-induced high-crystalline g‑C3N4 nanosheets for enhanced photocatalytic H2 evolution. ACS Energy Lett. 2018, 3: 514-519 (SCI, 一区top, IF=23.101, 被引频次297) 5. W.N. Xing, G. Chen*, C.M. Li, Z.H. Han, Y.D. Hu, QQ. Meng. Doping effect of non-metal group in porous ultrathin g-C3N4 nanosheets towards synergistically improved photocatalytic hydrogen evolution. Nanoscale, 2018, 10: 5239-5245. (SCI, 二区, IF=7.79, 被引频次95) 4. W.N. Xing, C.M. Li, G. Chen*, Z.H. Han, Y.S. Zhou, Y.D. Hu, Q.Q. Meng. Incorporating a novel metal-free interlayer into g-C3N4 framework for efficiency enhanced photocatalytic H2 evolution activity. Applied Catalysis B: Environmental, 2017, 203: 65-71. (SCI, 一区top, IF=19.503, ESI高被引论文, 被引频次148) 3. W.N. Xing, C.M. Li, Y. Wang, Z.H. Han, Y.D. Hu, D.H. Chen, Q.Q. Meng, G. Chen*. A novel 2D/2D carbon-based CPFA/g-C3N4 nanocomposites with enhanced charge carrier separation for photocatalytic H2 evolution. Carbon, 2017,115 :486-492 (SCI, 一区top, IF=12.70) 2. W. Xing,L. Ni*,X.S. Yan,X.L. Liu, Y.Y. Luo, Z.Y. Lu, Y.S. Yan,P.W. Huo. Preparation of C@CdS/halloysite nanotube composite photocatalyst using one-step pyrolytic method and its photodegradation properties. Acta Physico-Chimica Sinica, 2014, 30(1): 141-149. 1. W.N. Xing,L. Ni,P.W. Huo*, Z.Y. Lu, X.L. Liu, Y.Y. Luo, Y.S. Yan. Preparation high photocatalytic activity of CdS/halloysite nanotubes (HNTs) nanocomposites with hydrothermal method,Applied Surface Science, 2012, 259, 698-704. (SCI, 一区 top, IF=6.7)
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