承担 的主 要项 目及 成果 | 承担科研项目: [1] 国家自然科学基金面上项目(22372095),富含缺陷的单分子层纳米片光催化-高铁酸盐耦合降解抗生素机理研究,2024/01-2027/12, 主持; [2] 陕西省高层次人才引进计划-青年项目,2018/12-2023/12,主持; [3] 陕西省外国专家服务计划-一般项目(2023WGZJ-YB-17),环境功能材料设计与污染净化处理应用研究,2023.01-2023.12,主持; [4] 陕西省自然科学基金青年项目(2021JQ-535),单层纳米片光催化氧化-高铁酸盐氧化协同降解抗生素研究,2021/01-2022/12,主持; [5] 国家自然科学基金国际(地区)合作与交流项目(52161145409),二维钛基钙钛矿纳米材料原子/分子水平上有效活性位点设计与NOx气固光催化反应的选择性控制,2022/01-2024/12,参与(2/10); [6] 国家自然科学基金面上项目(21976116),“三明治”型层状钙钛矿体系极化诱导的光催化转化NO微观过程研究,2020/01-2023/12, 参与(2/9); [7] 陕西科技大学高水平博士科研启动基金(2017BJ-27), H2O和CO2还原光催化性能研究,2017/12-至今,主持; [8] 应用表面与胶体化学教育部重点实验室(陕西师范大学)开放课题(2024055),二维光催化材料的表界面调控及其降解抗生素机理研究,2024/01-2025/12,主持; [9] 能源与环境光催化国家重点(福州大学)实验室开放课题 (SKLPEE-KF201809), 过渡金属复合氧化物二维纳米片材料的可控合成及其光催化性能,2018/01-2020/12,主持; [10] 工业有机废水处理技术开发,陕西金泽恒生智能科技有限公司,2021/05-2022/05,主持。 代表性学术论文(专著): [1] 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. [2] 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. [3] B. Pan*, Y. Lv, Y. Dong, J. Qin, C. Wang, Hydrochar-Supported NiFe2O4 Nanosheets with a Tailored Microstructure for Enhanced CO2 Photoreduction to Syngas, Inorg. Chem., 2024, 63, 2148. [4] B. Pan*, M. Liao, Y. Zhao, Y. Lv, J. Qin, V.K. Sharma, C. Wang, Visible light activation of ferrate(VI) by oxygen doped ZnIn2S4/black phosphorus nanolayered heterostructure: Accelerated oxidation of trimethoprim, J. Hazard. Mater., 2023, 460, 132413. [5] B. Pan, M. Feng, J. Qin, A.A. Dar, C. Wang, X. Ma, V.K. Sharma, Iron(V)/Iron(IV) species in graphitic carbon nitride-ferrate(VI)-visible light system: Enhanced oxidation of micropollutants. Chem. Eng. J., 2022, 428, 132610. [6] B. Pan, Y. Wu, B. Rhimi, J. Qin, Y. Huang, M. Yuan, C. Wang, Oxygen-doping of ZnIn2S4 nanosheets towards boosted photocatalytic CO2 reduction, J. Energy Chem., 2021, 57, 1-9. [7] B. Pan, M. Feng, T.J. McDonald, K. Manoli, C. Wang, C.-H. Huang, V.K. Sharma, Enhanced ferrate(VI) oxidation of micropollutants in water by carbonaceous materials: Elucidating surface functionality, Chem. Eng. J., 2020, 398, 125607. [8] B. Pan, Y. Zhou, W. Su, X. Wang, Self-assembly synthesis of LaPO4 hierarchical hollow spheres with enhanced photocatalytic CO2-reduction performance, Nano Res., 2017, 10, 534. [9] B. Pan, S. Luo, W. Su, X. Wang, Photocatalytic CO2 reduction with H2O over LaPO4 nanorods deposited with Pt cocatalyst, Appl. Catal., B, 2015, 168-169, 458. [10] B. Pan, Q. Xie, H. Wang, J. Zhu, Y. Zhang, W. Su, X. Wang, Synthesis and photocatalytic hydrogen production of a novel photocatalyst LaCO3OH, J. Mater. Chem. A, 2013, 1, 6629. [11] B. Pan, J. Qin, C. Wang, Current Developments in Photocatalysis and Photocatalytic Materials: New Horizons in Photocatalysis-6 Photoreduction of CO2 on non-TiO2 based metal oxides, Elsevier, 2020, pp. 77-87. 授权发明专利: [1] 一种铁酸钴氮化碳S型异质结光催化活化过一硫酸盐降解抗生素的应用,ZL202210961476.6,2024,中国; [2] 一种氮化碳电极材料的制备方法,US12098464B2,2024,美国; [3] 一种铁酸钴助催化剂及其制备方法和应用,ZL202210066381.8,2024,中国; [4] 一种光催化-高铁酸盐协同氧化降解抗生素污染物的应用,102021000007121,2023,意大利; [5] 一种氮化碳电极材料的制备方法,ZL2020109315093,2022,中国; [6] 一种硒化钴助催化剂及其制备方法和应用,ZL201710942312.8,2020,中国; [7] 一种复合光催化剂Cd/LaPO4及其制备方法和应用,ZL201610888103.5,2019,中国; [8] 光催化剂磷酸镧及其制备方法与应用,ZL201410499843.0,2014,中国; [9] 一种磷酸铋复合氧化石墨烯光催化剂及其制备方法和应用,ZL201310351684.5,2013,中国。 |