董全峰

发布日期:2015-07-29     浏览次数:次   

 

电话:(0592)2185905 (实验室)
传真:(0592)2183905
电子邮箱:qfdong@xmu.edu.cn
地址:卢嘉锡楼416
课题组网站:https://batterylab.xmu.edu.cn/

个人简历:

博士 (武汉大学)
学士 (郑州大学)
博士后 (以色列理工学院 TECHNION)
中国电池工业协会常务理事 、《电化学》编委、《电池》编委 、先后获得厦门市科技进步奖、福建省科技进步奖、全国信息产业科技创新先进个人、全国电池行业首批技术专家等

研究兴趣:
锂离子电池、锂空电池、锂硫电池、超级电容器、燃料电池、电化学储能材料

近期主要代表论著:

  1. 1. Chen, Z.-F.; Lin, X.; Xia, H.; Hong, Y.; Liu, X.; Cai, S.; Duan, J.-N.; Yang, J.; Zhou, Z.; Chang, J.-K.; Zheng, M.; Dong, Q., A functionalized membrane for lithium-oxygen batteries to suppress the shuttle effect of redox mediators. J. Mater. Chem. A 2019, 7 (23), 14260-14270.

  2. 2. Ye, J. C.; Chen, J. J.; Yuan, R. M.; Deng, D. R.; Zheng, M. S.; Cronin, L.; Dong, Q. F., Strategies to Explore and Develop Reversible Redox Reactions of Li–S in Electrode Architectures Using Silver-Polyoxometalate Clusters. J. Am. Chem. Soc. 2018, 140 (8), 3134-3138.

  3. 3. Lin, X.; Yuan, R.; Cao, Y.; Ding, X.; Cai, S.; Han, B.; Hong, Y.; Zhou, Z.; Yang, X.; Gong, L.; Zheng, M.; Dong, Q., Controlling Reversible Expansion of Li2O2 Formation and Decomposition by Modifying Electrolyte in Li-O2 Batteries. Chem 2018, 4 (11), 2685-2698.

  4. 4. Lin, X.; Yuan, R.; Cai, S.; Jiang, Y.; Lei, J.; Liu, S.-G.; Wu, Q.-H.; Liao, H.-G.; Zheng, M.; Dong, Q., An Open-Structured Matrix as Oxygen Cathode with High Catalytic Activity and Large Li2O2 Accommodations for Lithium–Oxygen Batteries. Adv. Energy Mater. 2018, 8 (18), 1800089.

  5. 5. Gu, Y.; Wang, W.-W.; Li, Y.-J.; Wu, Q.-H.; Tang, S.; Yan, J.-W.; Zheng, M.-S.; Wu, D.-Y.; Fan, C.-H.; Hu, W.-Q.; Chen, Z.-B.; Fang, Y.; Zhang, Q.-H.; Dong, Q.-F.; Mao, B.-W., Designable ultra-smooth ultra-thin solid-electrolyte interphases of three alkali metal anodes.Nat. Commun. 2018, 9 (1), 1339.

  6. 6. Deng, D. R.; Xue, F.; Bai, C.-D.; Lei, J.; Yuan, R.; Zheng, M. S.; Dong, Q. F., Enhanced Adsorptions to Polysulfides on Graphene-Supported BN Nanosheets with Excellent Li–S Battery Performance in a Wide Temperature Range. ACS Nano 2018, 12 (11), 11120-11129.

  7. 7. Cai, S.; Zheng, M.; Lin, X.; Lei, M.; Yuan, R.; Dong, Q., A Synergistic Catalytic Mechanism for Oxygen Evolution Reaction in Aprotic Li–O2 Battery. ACS Catalysis 2018, 8 (9), 7983-7990.

  8. 8. Deng, D.-R.; Xue, F.; Jia, Y.-J.; Ye, J.-C.; Bai, C.-D.; Zheng, M.-S.; Dong, Q.-F., Co4N Nanosheet Assembled Mesoporous Sphere as a Matrix for Ultrahigh Sulfur Content Lithium–Sulfur Batteries. ACS Nano 2017, 11 (6), 6031-6039.

  9. 9. Chen, J.-J.; Ye, J.-C.; Zhang, X.-G.; Symes, M. D.; Fan, S.-C.; Long, D.-L.; Zheng, M.-S.; Wu, D.-Y.; Cronin, L.; Dong, Q.-F., Design and Performance of Rechargeable Sodium Ion Batteries, and Symmetrical Li-Ion Batteries with Supercapacitor-Like Power Density Based upon Polyoxovanadates. Adv. Energy Mater. 2017, 8, 1701021.

  10. 10. Ye, J.; Zang, J.; Tian, Z.; Zheng, M.; Dong, Q., Sulfur and nitrogen co-doped hollow carbon spheres for sodium-ion batteries with superior cyclic and rate performance. J. Mater. Chem. A 2016, 4 (34), 13223-13227.

  11. 11. Li, Y.-J.; Fan, J.-M.; Zheng, M.-S.; Dong, Q.-F., A novel synergistic composite with multi-functional effects for high-performance Li-S batteries. Energy Environ. Sci. 2016, 9 (6), 1998-2004.

  12. 12. An, T.; Deng, D.; Lei, M.; Wu, Q.-H.; Tian, Z.; Zheng, M.; Dong, Q., MnO modified carbon nanotubes as a sulfur host with enhanced performance in Li/S batteries. J. Mater. Chem. A 2016, 4 (33), 12858-12864.

  13. 13. Fan, J.-M.; Chen, J.-J.; Zhang, Q.; Chen, B.-B.; Zang, J.; Zheng, M.-S.; Dong, Q.-F., An Amorphous Carbon Nitride Composite Derived from ZIF-8 as Anode Material for Sodium-Ion Batteries. ChemSusChem 2015, 8 (11), 1856-1861.

  14. 14. Chen, J. J.; Yuan, R. M.; Feng, J. M.; Zhang, Q.; Huang, J. X.; Fu, G.; Zheng, M. S.; Ren, B.; Dong, Q. F., Conductive Lewis Base Matrix to Recover the Missing Link of Li2S8 during the Sulfur Redox Cycle in Li-S Battery. Chem. Mater. 2015, 27 (6), 2048-2055.

  15. 15. Chen, J. J.; Symes, M. D.; Fan, S. C.; Zheng, M. S.; Miras, H. N.; Dong, Q. F.; Cronin, L., High-Performance Polyoxometalate-Based Cathode Materials for Rechargeable Lithium-Ion Batteries. Adv. Mater. 2015, 27 (31), 4649-4654.


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