
陈岗,教授,博士生导师。1987年博士毕业于吉林大学物理系,师从著名物理学家余瑞璜院士。曾在比利时鲁汶大学从事客座研究和美国田纳西大学及橡树岭国家实验室从事博士后研究。曾担任吉林大学常务副校长,吉林大学研究生院院长。先后承担包括863计划、973计划、自然科学基金等多项国家级及省部级重点科研项目,发表SCI论文百余篇,获吉林省自然科学一等奖。
研究兴趣:
功能材料物理与化学
储能材料设计与性质研究
关联电子体系新奇物性研究
荣誉奖励:
教育部高等学校优秀骨干教师,享受国务院政府特殊津贴,吉林省优秀省管专家,吉林省拔尖创新人才第一层次,吉林省有突出贡献的中青年专家,获吉林省自然科学一等奖
代表性论文:
1. D. Wang, X. Bie, Q. Fu, D. Dixon, N. Bramnik, Y. Hu, F. Fauth, Y. Wei, H. Ehrenberg, G. Chen, F. Du*, Sodium vanadium titanium phosphate electrode for symmetric sodium-ion batteries with high power and long lifesPAn. Nature Communications 8, 15888, 2017.
2. X. Yang, R. Zhang, J. Zhao, Z. Wei, D. Wang, X. Bie, Y. Gao, J. Wang, F. Du*; G. Chen, Amorphous tin-based composite oxide: a high-rate and ultralong-life sodium-ion-storage material. Advanced Energy Materials 1701827, 2017.
3. D. Leonard, Z. Wei, G. Chen, F. Du*, X. Ji*, Water-in-salt electrolyte for potassium-ion batteries. ACS Energy Letters 3, 373−374, 2018.
4. J. Zhao, X. Yang, Y. Yao Y. Gao, Y. Sui, B. Zou H. Ehrenberg, G. Chen, F. Du*, Moving to aqueous binder: A valid aPProach to achieving high-rate capability and long-term durability for sodium-ion battery. Advanced Science 1700768, 2018.
5. Q. Pang, Y. Gao, Y. Zhao, Y. Ju, H. Qiu, Y. Wei*, B. Liu, B. Zou, F. Du, G. Chen*, Improved lithium-ion and sodium-ion storage proPErties from few-layered WS2 nanosheets embedded in a mesoporous CMK-3 matrix. Chemistry-a European Journal 23, 7074-7080, 2017.
6. D. Wang, Y. Gao*, Y. Liu, D. Jin, Y. Gogotsi, X. Meng, F. Du, G. Chen*, Y. Wei*, First-Principles calculations of Ti2N and Ti2NT2 (T = O, F, OH) monolayers as potential anode materials for lithium-ion batteries and beyond. Journal of Physical Chemistry C 121, 13025-13034, 2017.
7. D. Wang, Y. Liu, X. Meng, Y. Wei*, Y. Zhao, Q. Pang, G. Chen*, Two-dimensional VS2 monolayers as potential anode materials for lithium-ion batteries and beyond: first-principles calculations. Journal of Materials Chemistry A 5, 21370-21377, 2017.
8. D. Wang, Y. Gao, Y. Liu, Y. Gogotsi, X. Meng, G. Chen*, Y. Wei*, Investigation of chloride ion adsorption onto Ti2C MXene monolayers by first-principles calculations. Journal of Materials Chemistry A 5, 24720-24727, 2017.
9. D. Yu, Q. Pang, Y. Gao, Y. Wei*; C. Wang, G. Chen, F. Du*, Hierarchical flower-like VS2 nanosheets – A high rate-capacity and stable anode material for sodium-ion battery. Energy Storage Materials 11, 1-7, 2018.
10. Q. Pang, Y. Zhao, X. Bian, Y. Ju, X. Wang, Y. Wei*, B. Liu, F. Du, C. Wang*, G. Chen, Hybrid graphene@MoS2@TiO2 microspheres for use as a high performance negative electrode material for lithium ion batteries. Journal of Materials Chemistry A 5, 3667-3674, 2017.







