主要成果
长期从事绿色储能及电化学领域教学、科研与产业化推广工作。近五年,以第一作者在Nature Communications,Energy Storage Materials,Small Methods,Chinese Chemical Letters等领域高水平期刊发表SCI论文8篇,其中中科院一区论文4篇。主要研究方向为纤维素基绿色储能体系的开发、水系锌离子电池电极/电解质界面原位演化过程、界面反应机制及调控研究。 研究方向 (1)纤维素基绿色储能体系的开发 (2)电池电极/电解质界面原位表征 (3)界面反应机制及调控研究 承担科研项目 南京林业大学高层次人才(F类)科研启动基金,主持,在研,2026.01-2028.12。 代表性期刊论文 1.J. Wang, R. Wen*, et al. In Situ Visualization of Interfacial Processes at Nanoscale in Non-alkaline Zn-Air Batteries, Nat. Commun. 2024, 151, 0882. (IF: 14.7, JCR 一区) 2. J. Wang, R. Wen*, et al. In Situ Insight into the Interfacial Dynamics in "Water-in-Salt" Electrolyte-Based Aqueous Zinc Batteries, Small Methods. 2023, 7, 2300392. (IF: 10.7, JCR 一区) 3.J. Wang, R. Wen*, et al. In situ imaging of the interfacial processes manipulated by salt concentration on Zinc anodes in Zinc metal batteries, Chin. Chem. Lett. 2024, 109815. (IF: 9.4, JCR 一区) 4.J. Wang, R. Wen*, et al. In situ nanoscale insights into the interfacial degradation of Zn metal anode, Chin. Chem. Lett. 2024, 110308. (IF: 9.4, JCR 一区) 5.J. Wang, R. Wen*,et al. Recent progress in the application of in situ atomic force microscopy for metal anodes processes in energy storage batteries, Chemical Physics Reviews. 2023, 4, 031308. (IF: 6.1, JCR 一区) 6.Y.-X. Song#*, J. Wang#, R. Wen*, et al. Interfacial chemistry regulation via dibenzenesulfonamide-functionalized additives enables high-performance Zn metal anodes, Energy Stor. Mater. 2023, 58, 85. (IF: 18.9, JCR 一区) 7.J. Wang, R. Wen*,et al. Revealing the plating/stripping processes on Zn anodes in Zn metal batteries via in situ AFM, Next Nanotechnology. 2024, 5, 100036. 8.J. Wang, B.-H. Peng*, et al. Research of oxygen evolution properties for spinel NiFe2O4/C and CoFe2O4/C Nano-Composites derived from prussian blue analogues. Journal of Shihezi university (Nature Science), 2018, 02, 1-6. 9.P.-P. Xie#, Y. Cao#, J. Wang#, L. Luo*, R. Wen*, X.-M. Sun*, et al. Revealing the Geometric Structure-Dependent Supersaturation Degree of Surface Nanobubbles through a Combined Electrochemical/Imaging Method, ACS. Electrochemistry. 2025.
通讯地址 地址:江苏省南京市南京林业大学梁希楼310室 邮箱:wangjiao@njfu.edu.cn |