王晶晶
现任职称/职务:讲师、博/硕导
通讯地址:天津市北辰区西平道5340号
邮政编码:300401
电子邮箱:2022003@hebut.edu.cn
研究领域:1.纳米催化剂合成
2.二氧化碳电催化还原及电解水制氢
3.电催化反应原位测试及机理研究
学术经历:
(1) 2022-01 至今, 河北工业大学, 化工学院, 讲师
(2) 2020-07 至 2021-10, 新加坡国立大学化学系 博士后
(3) 2016-01 至 2020-01, 新加坡国立大学, 化学工程, 博士
(4) 2012-09 至 2015-01, 天津大学, 材料学, 硕士
(5) 2008-09 至 2012-06, 天津大学, 材料科学与工程, 学士
学术成就:
围绕催化剂组分、结构、界面等对活性位点数量和活性影响的科学问题,致力于新型过渡金属基电催化剂的设计和制备,及其OER或ORR性能提升;致力于CO2(CO)的电化学还原,根据目标产物进行催化剂材料的设计,测试条件的优化,性能的提升以及大规模生产。利用原位拉曼,原位红外,原位质谱等手段进行电化学反应的机理研究及中间体探测。取得的成果包括:1) 首次制备磷酸氢钴超 薄纳米片,实现OER反应过程的高效电荷传输;2)开发出以阴离子表面活性剂(SDBS)为剥离基团的 LDHs超薄片制备方法;3)利用复合催化剂结构(硫化镍@不饱和MOF等),提升OER活性;4)首次制备 三金属单原子催化剂,获得超高ORR活性。
科研项目:
(1) Shell Global, NUS-Shell校企合作, R143-000-B91-281, Electrocatalysts for the production of ethanol and n-propanol, 2021-05 至 2021-10, 200万新元, 在研, 参与
(2) National Research Foundation (NRF) of Singapore, 国际项目, R-143-000-A25-592, A Table Top Chemical Factory for the Reduction of CO2 to Value Added Chemicals, 2020-07 至 2021-06, 150万新元 , 参与
(3) National Research Foundation (NRF) of Singapore, 新加坡与剑桥大学合作项目, R-279-000-565- 592, IRP1:Sustainable Reaction Engineering for Carbon Neutral Industry., 2016-01 至 2020-01, 150 万新元, 参与
(4) National Research Foundation (NRF) of Singapore, 国家项目, R143-000-A64-114, NUS green energy program, 2019-01 至 2020-01, 100万新元, 参与
论著专利:
1) Tao Ling, Jing-Jing Wang, Hao Zhang, Shu-Tao Song, Shi-Zhang Qiao and Xi-Wen Du *. Free standing Ultrathin Metallic Nanosheets: Materials, Synthesis and Applications, Adv. Mater. 2015, 27, 5396-5402.
2) Jing-jing Wang and Hua Chun Zeng*. A Hybrid OER Electrocatalyst Combining Mesoporous Hollow Spheres of N, P-doped Carbon with Ultrafine Co2NiOx. ACS Appl. Mater. Interfaces, 2020, 45, 50324–50332.
3) Jing-Jing Wang, Wenjie Zang, Shibo Xi, Mohammadreza Kosari, Stephen J. Pennycook and Hua-Chun Zeng*. Trimetal Atoms Confined in Openly Accessible Nitrogen-doped Carbon Constructs for Efficient ORR. J. Mater. Chem. A,2020,33, 17266-17275.
4) Jing-Jing Wang and Hua-Chun Zeng*. A Hybrid Electrocatalyst with Coordinatively Unsaturated MOF Shell and Hollow Ni3S2/NiS Core for OER Application. ACS Appl. Mater. Interfaces, 2019, 11, 23180-23191.
5) Jing-Jing Wang and Hua Chun Zeng*. Three-Dimensional Hierarchical Multimetal-LDH Nanoflakes and Their Derived Spinel Oxides for Efficient Oxygen Evolution. ACS Appl. Energy Mater. 2018, 1, 4998−5007.
6) Jing-Jing Wang and Hua Chun Zeng*. CoHPi Nanoflakes for Enhanced Oxygen Evolution Reaction. ACS Appl. Mater. Interfaces, 2018, 10, 6288-6298.
7) Jing-Jing Wang, Tao Ling, Shi-Zhang Qiao* and Xi-Wen Du *. Double Open-Circuit Voltage of Three-Dimensional ZnO/CdTe Solar Cells by a Balancing Depletion Layer. ACS Appl. Mater. Interfaces, 2014, 6, 14718− 14723.
8) Peng-Fei Yin, Jing-Jing Wang, Yu-Zhu Zhou, Jing Mao, Wen-Jing Qin, Shi-Zhang Qiao, Tao Ling* and Xi-Wen Du*. Engineering hollow electrodes for hybrid solar cells for efficient light harvesting and carrier collection. J. Mater. Chem. A, 2016, 44, 17260-17266.
9) Lan-Bing Liu, Shuang Qin, Jing-Jing Wang, Wen-Jing Zheng, Xi-Wen Du*. Photothermal synthesis of ultrafine CuxO nanoparticles on carbon nanotubes for photosensitized degradation. Chem. Comm. 2015, 26, 5660-5663.
招收方向:
化学工程与技术、化学