基本情况:
姓名:高世伦
电子邮箱:gaoshilunn@163.com
学历学位:研究生学历,工学博士学位
职称:副教授
研究专长:聚合物的定向设计合成;聚合物基电解质的设计制备及应用。
可招收硕博专业:集成电路工程
教育背景:
2018.09-2021.06 南开大学 材料物理与化学 工学博士
2015.09-2018.03 天津理工大学 材料科学与工程 工学硕士
2011.09-2015.06 烟台大学 高分子材料与工程 工学学士
工作经历:
2023.07-至今 天津理工大学 电子科学与技术 副教授
2021.07-2023.06 南开大学 材料物理与化学 博士后
项目:
中国博士后第70批面上资助(2021M701769),2021年11月-2023年6月(8.0万元,主持)
论文:
[1] Y. Zhang, T. Cheng, S. Gao,* Hang Ding, Z. Li, L. Li, D. Yang, H. Yang* and P.-F. Cao*, Construction of an ultrathin multi-functional polymer electrolyte for safe and stable all-solid-state batteries, Mater. Horiz., Accept.
[2] S. Gao,‡ M.. Ma,‡ Y. Zhang, L. Li, S. Zhu, Y. He, D. Yang, H. Yang*, and P.-F. Cao*, In-Situ Constructing of Ultra-Thin and Flexible Polymer Electrolyte for Stable All-Solid-State Lithium-Metal Batteries, J. Mater. Chem. A, 2024,12, 9469-9477.
[3] S. Gao, Z. Li, Z. Zhang, B. Li, X. C. Chen, G. Yang, T. Saito, M. Tian, H. Yang*, P.-F. Cao*, Constructing a Multi-Functional Polymer Network for Ultra-Stable and Safe Li-metal Batteries, Energy Storage Mater., 2023, 55, 214–224.
[4] S. Gao,‡ Y. Zhang,‡ M. Ma, Z. Li, Z. Sun, M. Tian, H. Yang* and P.-F. Cao*, Fiber-reinforced quasi-solid polymer electrolytes enabling stable Li-metal batteries, Mater. Adv., 2023,4, 3452-3460.
[5] S. Gao#, Y. Pan#, B. Li, M. A. Rahman, M. Tian, H. Yang*, P.-F. Cao*, Ultra-Stretchable, Ionic Conducting, Pressure-Sensitive Adhesive with Dual Role for Stable Li-Metal Batteries, Adv. Funct. Mater., 2022, 2210543.
[6] S. Gao, M. Zhang, C. Gainaru, A. P. Sokolov, H. Yang, P.-F. Cao*, Plastic Crystal in Rubbery Matrix for Light and Safe Batteries, Matter, 2022, 3, 2397–2561.
[7] S. Gao, Z. Li, N. Liu, G. Liu, H. Yang*, P.-F. Cao*, Are Porous Polymers Practical to Protect Li Anodes? -Current Strategies and Future Opportunities, Adv. Funct. Mater., 2022, 2202013.
[8] S. Gao, F. Sun, N. Liu, H. Yang*, P.-F. Cao*, Ionic conductive polymers as artificial solid electrolyte interphase films in Li metal batteries–A review, Mater. Today, 2020, 40, 140-159.
[9] S. Gao, F. Sun, A. Brady, A. Brady, Y. Pan, A. Erwin, D. Yang, V. Tsukruk, A. G. Stack, T. Saito, H. Yang*, P.-F. Cao*, Ultra-efficient polymer binder for silicon anode in high-capacity lithium-ion batteries, Nano Energy, 2020, 73, 104804.
[10] S. Gao, A. Cannon, F. Sun, Y. Pan, D. Yang, S. Ge, N. Liu, A. P. Sokolov, E. Ryan, H. Yang*, P.-F. Cao*, Glass-Fiber Reinforced Polymeric Film for Stable Li-Metal Electrode: Unraveling the Key Attributes of Efficient Protecting Layers, Cell Rep. Phys. Sci., 2, 100534.
[11] S. Gao, D. Yang, Y. Pan et al. From natural material to high-performance silicon based anode: Towards cost-efficient silicon based electrodes in high-performance Li-ion batteries, Electrochim. Acta, 2019,327, 135058.
[12] S. Gao, H. Zhang, X. Wang*, D. Song, X. Shi, L. Zhang*, The Role of Various Components of Transition Metal Layer on the Properties of Li-Rich Cathode Li1.2M0.4Mn0.4O2 (M = Ni, Co, Ni1/2Mn1/2 and Fe), J. Electrochem. Soc., 2017, 164, A3824-A3831.
[13] S. Gao, T. Yang, H. Zhang*, D. Song, X. Shi, L. Zhang*, Improved electrochemical performance and thermal stability of Li-rich material Li1.2(Ni0.25Co0.25Mn0.5)0.8O2 through a novel core-shelled structure design, J. Alloy. Compd., 2017, 729, 695-702.
[14] S. Gao, Y. Zhang, H. Zhang*, D. Song, X. Shi, L. Zhang*, Effect of lithium content on structure, morphology and electrochemical performance of Li-rich cathode materials Li1+x(Ni1/6Co1/6Mn4/6)1-xO2, New J. Chem., 2017, 41, 10048-10053.
[15] Y. He, Y. Zhang, Z. Li, P.-F. Cao, H. Yang*, S. Gao*, From Solid Waste to High-Performance Li3.25Si Anode: Towards High Initial Coulombic Efficiency Li-Si Alloy Electrodes for Li-Ion Batteries, New J. Chem., 2022, 46, 15016-15023.
[16] Z. Li, K. Zhang, M. Ma, Y. Zhang, H. Feng, P.‑F. Cao, S. Gao*, H. Yang*, Facile Fabrication of Si/Ge/G@C Composite Electrodes for High Performance Lithium‑ion Batteries, DOI: 10.1007/s12633-022-02143-2.
专利:
杨化滨,高世伦,潘宜漾,用于锂离子电池硅基负极的聚亚胺导电粘结剂,中国发明专利申请号201910520570.6,公开号CN 110277559 A。
获奖:
南开大学优秀毕业生、博士研究生国家奖学金、硕士研究生国家奖学金、南开大学三好学生