[1] C. Wang, T. Y. Qiu, Y. N. Zhao, Z. L. Lang, Y. G. Li, Z. M. Su and H. Q. Tan,* Phosphorus-Alkynyl Functionalized Covalent Triazine/Heptazine-Based Frameworks for High-Performance Photocatalytic Hydrogen Peroxide Production, Advanced Energy Materials, 2023, 13, 2301634.
[2] L. Z. Cao,# C. Wang,#(共同第一作者) H. Wang, X. M. Xu, X. Tao,* H. Q. Tan* and G. S. Zhu,* Rationally Designed Cyclooctatetrathiophene-based Porous Aromatic Frameworks (COTh-PAFs) for Efficient Photocatalytic Hydrogen Peroxide Production, Angewandte Chemie International Edition, 2024, 63, e202402095.
[3] Y. N. Zhao,# C. Wang,#(共同第一作者) X. Q. Han, Z. L. Lang,* C. C. Zhao, L. Y. Yin, H. Y. Sun, L. K. Yan,* H. D. Ren and H. Q. Tan,* Two-Dimensional Covalent Heptazine-Based Framework Enables Highly Photocatalytic Performance for Overall Water Splitting, Advanced Science, 2022, 9, 2202417.
[4] R. Y. Zhang, X. W. Jia, M. L. Sun, X. C. Liu,* C. Wang,* X. D. Yu and Y. Xing,* Synergistic manipulation of sulfur vacancies and palladium doping of In2S3 for enhanced photocatalytic H2 production, Journal of Colloid and Interface Science, 2025, 677, 425-434.
[5] C. Wang, Y. N. Zhao, C. Y. Zhu, M. Zhang,* Y. Geng, Y. G. Li and Z. M. Su,* An intriguing window opened by a metallic two-dimensional Lindqvist-cobaltporphyrin organic framework as an electrochemical catalyst for the CO2 reduction reaction, Journal of Materials Chemistry A, 2020, 8, 23599-23606.
[6] C. Wang, C. Y. Zhu, M. Zhang,* Y. Geng, Y. G. Li and Z. M. Su,* A two-dimensional conductive Mo-based covalent organic framework as an efficient electrocatalyst for nitrogen fixation, Journal of Materials Chemistry A, 2020, 8, 14807-14814.
[7] X. W. Jia,# C. Wang,#(共同第一作者) Y. F. Li, R. Y. Zhang, Z. Shi, X. C. Liu, X. D. Yu, M. Zhang and Y. Xing,* All-Solid-State Z-scheme Ta3N5/Bi/CaTaO2N Photocatalyst Transformed from Perovskite CaBi2Ta2O9 for Efficient Overall Water Splitting, Chemical Engineering Journal, 2022, 431, 134041.
[8] X. Wang,# C. Wang,#(共同第一作者) H. Q. Tan,* T. Y. Qiu, Y. M. Xing, Q. K. Shang,* Y. N. Zhao, X. Y. Zhao and Y. G. Li,* Design of porous organic polymer photocatalysts based on heptazine for efficient photocatalytic aerobic oxidation, Chemical Engineering Journal, 2022, 431, 134051.
[9] C. Wang, X. M. Liu, M. Zhang,* Y. Geng, L. Zhao, Y. G. Li* and Z. M. Su,* Two-Dimensional Cobaltporphyrin-based Cobalt-Organic Framework as an Efficient Photocatalyst for CO2 Reduction Reaction: A Computational Study, ACS Sustainable Chemistry & Engineering, 2019, 7, 14102-14110.
[10] C. Wang, Y. N. Zhao, Z. L. Lang,* Y. G. Li, Z. M. Su and H. Q. Tan,* Tunable covalent benzo-heterocyclic rings constructed two-dimensional conjugated polymers for visible-light-driven water splitting, Nanoscale, 2023, 15, 18883-18890.
[11] C. Wang,* Y. T. Shan, W. H. Zheng, M. Zhang* and Z. M. Su,* Two-dimensional graphdiyne analogue containing Mo-coordinated porphyrin covalent organic framework as a high-performance electrocatalyst for nitrogen fixation, Applied Surface Science, 2022, 580, 152359.
[12] C. Wang, D. H. Zhang, W. H. Zheng, C. Y. Zhu, M. Zhang,* Y. Geng and Z. M. Su,* CO2 Electroreduction Performance of Transition Metals Supported on g-C(CN)3 Monolayer with Specific TMN3 Active Sites, Applied Surface Science, 2022, 573, 151544.
[13] C. Wang, M. Zhang,* J. Song,* Y. T. Shan and Z. M. Su,* Two-dimensional conductive π-conjugated metal-organic frameworks as promising electrocatalysts for highly efficient hydrogen evolution reaction, Applied Surface Science, 2022, 601, 154241.
[14] X. W. Jia,# R. Y. Zhang,# X. C. Liu,* M. L. Sun, Y. F. Li, C. Wang,* X. D. Yu and Y. Xing,* Coupling of surface oxygen vacancy and 2D structure of Aurivillius-phase CaBi2Ta2O9 nanoplates for enhanced photocatalytic H2 production, Applied Surface Science, 2024, 642, 158596.
[15] C. Wang,* X. Wang, D. L. Han, J. Song,* Z. M. Su and M. Zhang,* Novel two-dimensional boron-centered graphdiyne analogue as multifunctional electrocatalyst for hydrogen evolution, oxygen evolution, and oxygen reduction reactions, International Journal of Hydrogen Energy, 2024, 58, 783-789.
[16] C. Wang,* X. Wang, K. Gong, D. L. Han, J. Song* and M. Zhang, Harnessing the clean energy: Phosphorus-alkynyl covalent organic frameworks for photocatalytic hydrogen production, International Journal of Hydrogen Energy, 2024, 86, 293-299.
[17] X.W. Jia, Y. F. Li,* X. C. Liu, X. D. Yu, C. Wang,* Z. Shi and Y. Xing,* Highly crystalline sulfur and oxygen co-doped g-C3N4 nanosheets as an advanced photocatalyst for efficient hydrogen generation, Catalysis Science & Technology, 2022, 12, 5136-5142.
[18] X. Q. Liu,# Y. Zhang,# C. Wang#(共同第一作者) and L. Shen,* Polar materials for photocatalytic applications: A critical review, Interdisciplinary Materials, 2024, 1-35.
[19] C. Wang, M. Zhou, Y. Y. Ma, H. Q. Tan,* Y. H. Wang* and Y. G. Li,* Hybridized Polyoxometalate-Based Metal-Organic Framework with Ketjenblack for the Nonenzymatic Detection of H2O2, Chemistry-An Asian Journal, 2018, 13, 2054-2059.
[20] C. Wang, C. Y. Zhu, M. Zhang,* Y. Geng and Z. M. Su,* Copper Dimer Anchored in g-CN Monolayer as an Efficient Electrocatalyst for CO2 Reduction Reaction: A Computational Study, Advanced Theory and Simulations, 2020, 3, 2000218.
[21] K. Gong, X. W. Wen, X. F. He, Y. H. Fei, J. Song* and C. Wang,* Novel two-dimensional cobaltporphyrin-based organic framework as a promising electrocatalyst for CO2 reduction reaction: a computational study, New Journal of Chemistry, 2024, 48, 3232-3238.
[22] X. Wang,# C. Wang,#(共同第一作者) L. H. Chen, H. Q. Tan,* Y. M. Xing, H. Y. Sun, Y. N. Zhao and D. E. Zhang, Defect engineering in conjugated polyimide for promoting visible-light-driven photocatalytic benzylamine oxidation, New Journal of Chemistry, 2023, 47, 2821-2831.