论文著作:
[1]Bin Wang, Wei Zhang#, *, Yuanbin She*, Paul K. Chu*, Jiexiang Xia*, et al. Semimetallic bismuthene with edge-rich dangling bonds: Broad-spectrum-driven and edge-confined electron enhancement boosting CO2 hydrogenation reduction, Advanced Materials, 2024, 36, 2312676.
[2]Dan Li#, Jinyuan Liu#, Bin Wang*, Chao Huang*, Paul K. Chu*, Progress in Cu-Based Catalyst Design for Sustained Electrocatalytic CO2 to C2+ Conversion, Advanced Science, 2025, 12, 2416597.
[3]Bin Wang, Xingwang Zhu*, Jiexiang Xia*, Paul K. Chu*, et al. Epitaxial Bi4O5Br2 nanosheets on hollow carbon spheres for confined electron pump reactor and enhanced photocatalytic CO2 hydrogenation reduction, Applied Catalysis B: Environment and Energy, 2025, 374, 125394.
[4]Shihao Jia#, Huimin Han#, Bin Wang*, Xingwang Zhu*, Yingjie Hua*, et al. Multidimensional carbon-based polymer/Bi2O2CO3 S-scheme heterojunction boosting carrier separation in efficient photocatalytic seawater purification, Applied Catalysis B: Environment and Energy, 2024, 353, 124050.
[5]Bin Wang#, Paul K. Chu*, Jiexiang Xia*, et al. Porous edge confinement: High carrier potential and low activation energy barrier synergistically boosting the efficiency of selective photocatalytic CO2 conversion, Applied Catalysis B: Environment and Energy, 2023, 325, 122304.
[6]Bin Wang#, Jiexiang Xia*, et al. Excited electron-rich Bi(3-x)+ sites: a quantum well-like structure for highly-promoted selective photocatalytic CO2 reduction performance, Advanced Functional Materials, 2022, 32, 202202885.
[7]Bin Wang#, Jiexiang Xia*, et al. Space-Confined Yolk-Shell Construction of Fe3O4 nanoparticles inside N-doped hollow mesoporous carbon spheres as bifunctional electrocatalysts for long-term rechargeable zinc-air batteries, Advanced Functional Materials, 2020, 30, 2005834.
[8]Jiexiang Xia#*, Bin Wang#, Shaojun Guo*, et al. Construction of single-atom catalysts for electro-, photo- and photoelectro-catalytic applications: State-of-the-art, opportunities, and challenges, Materials Today, 2022, 53, 217-237.
[9]Bin Wang, Jiexiang Xia*, et al. Unique Z-scheme carbonized polymer dots/Bi4O5Br2 hybrids for efficiently boosting photocatalytic CO2 reduction, Applied Catalysis B: Environmental, 2021, 293, 120182.
[10]Bin Wang#, Huiyuan Zhu*, Jiexiang Xia*, et al. Revealing the role of oxygen vacancies in bimetallic PbBiO2Br atomic layers for boosting photocatalytic CO2 conversion, Applied Catalysis B: Environmental, 2020, 277, 119170.
[11]Bin Wang, Wenshuai Zhu*, Jiexiang Xia*, et al. Sacrificing ionic liquid-assisted anchoring of carbonized polymer dots on perovskite-like PbBiO2Br for robust CO2 photoreduction, Applied Catalysis B: Environmental, 2019, 254, 551-559.
[12]Bin Wang, Jiexiang Xia*, Sheng Dai*, Huaming Li*, et al. Ionic liquid-induced strategy for porous perovskite-like PbBiO2Br photocatalysts with enhanced photocatalytic activity and mechanism insight, Applied Catalysis B: Environmental, 2017, 206, 127-135.
[13]Xingwang Yan, Bin Wang*, Jiexiang Xia*, et al. Hierarchical columnar ZnIn2S4/BiVO4 Z-scheme heterojunctions with carrier highway boost photocatalytic mineralization of antibiotics, Chemical Engineering Journal, 2023, 452, 139271