论文著作:
[1] B. Pan*, R. Xu, Y. Hao, J. Qin, J. Zhang, C. Wang, Engineering electron-rich Co-doped BaTiO3 with light-driven redox cycles for superior peroxymonosulfate activation, Chem. Eng. J., 2026, 532, 174183.
[2] B. Pan*, J. Zhang, R. Li, Y. Zhou, J. Qin, R. Xu, C. Wang, Tailoring NiFe2O4 nanoparticles via electron-rich Co centers and abundant redox pairs: boosting peroxymonosulfate activation for micropollutant degradation, Sep. Purif. Technol., 2026, 392, 136859.
[3] J. Qin, M. Duan, J. Zhang, W. Chen, T. Yan, C. Wang, B. Pan*, Architecting an ‘electron highway’: cobalt-doped tubular carbon nitride for superior photocatalytic PMS activation, J. Mater. Chem. A, 2026. (DOI:10.1039/D5TA09694D)
[4] J. Qin, M. Duan, Y. Zhang, R. Hua, Y. Zhang, C. Wang, B. Pan*, Nitrogen-vacancy-rich Co3O4/carbon nitride activating peroxymonosulfate for efficient micropollutant degradation: Dominant role of superoxide radicals. Environ. Res., 2025, 285, 122460.
[5] J. Qin, Y. Zhang, M. Duan, R. Hua, C. Wang, B. Pan*, Synergistic nitrogen vacancies boost S-scheme charge separation in CuO/carbon nitride for efficient photocatalytic hydrogen production. Int. J. Hydrogen Energy, 2025, 188, 152167.
[6] B. Pan*, G. Jin, W. Chen, J. Qin, F. Li, C. Wang, Hierarchical Cu-doped MoS2 microspheres with efficient visible-light-driven peroxymonosulfate activation for micropollutant degradation: Nanostructure engineering and reaction mechanism, Environ. Res., 2025, 272, 121205.
[7] J. Qin, Y. Dong, X. Lai, B. Su, B. Pan*, C. Wang, S. Wang, Oxygen vacancy-rich CoMoO4/Carbon nitride S-scheme heterojunction for boosted photocatalytic H2 production: Microstructure regulation and charge transfer mechanism. J. Mater. Sci. Technol., 2024, 198, 176-185.
[8] B. Pan*, W. Chen, L. Zhou, X. Lai, J. Qin, C. Wang, CoFe2O4/carbon nitride Z-scheme heterojunction photocatalytic PMS activation for efficient tetracycline degradation: Accelerated electron transfer. Process Saf. Environ. Prot., 2024, 191, 2522-2532.