王佳佳,女,1997年1月出生,中共党员,河南郏县人,汉族,博士,现任河南城建学院教师。
研究领域:闭式硼烷的合成,硼簇配位空间限域制备环境功能材料,基于含硼金属的电催化硝酸根还原合成氨/尿素/氨基酸。
联系方式:wjj961111@163.com
教育经历:
2023.09-2026.06 武汉大学,化学,理学博士
2019.09-2022.07 贵州大学,环境工程,工学硕士
2015.09-2019.06 河南工程学院,资源环境科学,工学学士
工作经历:
2026.07-至今 河南城建学院,材料与化工学院,任教
近年来代表性论文:
[1] Jiajia Wang, Kai Liao, et al., Ru-B Modulated Electronic Structure Promotes Electrocatalytic Nitrate Reduction to Ammonia and Zinc-Nitrate Battery, Adv. Funct. Mater., 2026, 36(10), e16068.
[2] Jiajia Wang, Zhuodong Ou, et al., Electronic structure modulated by B-doped Cu promotes electrocatalytic nitrate reduction for ammonia production, ACS Catal., 2025, 15: 156-166.
[3] Jiajia Wang, Xuefan Deng, et al., Performance and mechanism of ammonia production by electrocatalytic nitrate reduction based on dodecahydro-closo-dodecaborate hybrid, J. Colloid Interface Sci., 2023, 652: 945-951.
[4] Jiajia Wang, Baojun Liu, et al., Insight into the mechanisms of BPS degradation by electro-Fenton method modified by Co-based nanoparticles on the oxidized carbon cathode, Chem. Eng. J., 2022, 446: 137376.
[5] Jiajia Wang, Jiangzhou Qin, et al., Reaction mechanisms and toxicity evolution of Sulfamethoxazole degradation by CoFe-N doped C as Electro-Fenton cathode, Sep. Purif. Technol., 2022, 298: 121655.
[6] Jiajia Wang, Zhengyu Fan, et al., High Faraday efficiency of Cu1Co1-BCN based on a dodecahydro-closo-dodecaborate hybrid for electrocatalytic reduction of nitrate to ammonia. J. Mater. Chem. A., 2023, 11: 20234.
[7] Xinyu Wang#, Jiajia Wang#, et al., Antitumor Therapy through Photothermal Performance Synergized with Catalytic Activity Based on the Boron Cluster Supramolecular Frameworks, ACS Appl. Mater. Interfaces., 2024, 16(26): 32983-32991.
[8] Xia Hu#, Jiajia Wang#, et al., Efficient H2O2 Generation and Bisphenol A Degradation in electro-Fenton of O-doped porous biochar cathode derived from spirit-based Distiller’s grains, Process Saf Environ., 2022,166: 99-107.
[9] 王佳佳,喻兰兰等,二维纳米材料MXenes及其复合物在电催化领域中的应用研究进展[J]. 材料工程, 2022, 1(50): 43-55.
[10] 王佳佳,黄思博等,光催化硝酸根还原产氨的综合实验设计[J]. 大学化学,2025,40(8):241.
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