代表性论文如下:
1. C. Liu, X. Liu, B. Chen, Z. Li, X. Ou, Y. Lu, Y. Liu, C. Wu, S. Yao, Y. Liu, L. Ye, B. Han*, and Z. Yang, Squaric acid-based zwitterionic covalent organic framework induces triple synergy for boosted hydrogen peroxide photosynthesis, Nat. Commun., 2025, 16: 8941.
2. Y. Lin, Y. Wang, Z. Weng, Y. Zhou, S. Liu, X. Ou, X. Xu, Y. Cai, J. Jiang, B. Han*, Z. Yang, Coordination engineering of heterogeneous high-valent Fe(IV)-oxo for safe removal of pollutants via powerful Fenton-like reactions, Nat. Commun., 2024, 15: 10032.
3. Z. Weng, Y. Lin, S. Guo, X. Zhang, Q. Guo, Y. Luo, X. Ou, J. Ma, Y. Zhou, J. Jiang, B. Han*, Site engineering of covalent organic frameworks for regulating peroxymonosulfate activation to generate singlet oxygen with 100% selectivity, Angew. Chem. Int. Ed., 2023, 62: e202310934.
4. Y. Luo, B. Zhang, C. Liu, D. Xia, X. Ou, Y. Cai, Y. Zhou, J. Jiang, B. Han*, Sulfone‐modified covalent organic frameworks enabling efficient photocatalytic hydrogen peroxide generation via one‐step two‐electron O2 reduction, Angew. Chem. Int. Ed., 2023, 62: e202305355.
5. S. Guo, K. Zhao, L. Liang, Z. Li, B. Han*, X. Ou, S. Yao, Z. Lin, Z. Dong, Y. Liu, L. Ye, B. Weng, Y. Cai*, Z. Yang, Fully conjugated Sp2 carbon-linked covalent organic frameworks enables accelerated exciton process for superior singlet oxygen photosynthesis for water remediation, Angew. Chem. Int. Ed., 2025, 64: e202509141.
6. J. Liu, B. Han*, X. Liu, S. Liang, Y. Fu, J. He*, L. Chung, Y. Lin, Y. Wei, S. Wang, T. Ma*, Z. Yang, Tailoring d‑Band Center of Single-Atom Nickel Sites for Boosted Photocatalytic Reduction of Diluted CO2 from Flue Gas, Angew. Chem. Int. Ed., 2025, 64: e202417435.
7. Z. Li, Z. Dong, Z. Zhang*, B. Wei, C. Meng, W. Zhai, Y. Wang, X. Cao, B. Han*, Y. Liu*, Covalent Organic Frameworks for Boosting H2O2 Photosynthesis via the Synergy of Multiple Charge Transfer Channels and Polarized Field, Angew. Chem. Int. Ed., 2025, 64: e202420218.
8. B. Han+, X. Ou+, Z. Deng, Y. Song, C. Tian, H. Deng, Y. Xu, Z. Lin*, Nickel Metal–Organic Framework Monolayers for Photoreduction of Diluted CO2: Metal-Node-Dependent Activity and Selectivity, Angew. Chem. Int. Ed., 2018, 57(51): 16811-16815.
9. S. Yao, J. Liu, J. Tan, K. Zhao, Z. Lin, L.-H. Chung, Y. Zhou, X. Ou, J. He, B. Han*, Z. Yang, Conductive MOF-Based NiZn Dual Atom Catalyst for Boosted Photoreduction of Diluted CO2: The Effects of Inert Sites. Adv. Funct. Mater., 2025, e26031.
10. Q. Song, Z. Li, Q. Peng, X. Ou, K. Zhao, Z. Dong, L. Ye, C. Liu, Y. Liu, J. He, L. Chung, B. Han*, Linkage orientation engineering of covalent organic frameworks enables flexible generation of reactive oxygen species in photocatalytic O2 activation, Appl. Catal. B: Environ. Energy, 2025, 378, 125619.