教育背景
2015-2019 新加坡国立大学 博士
2012-2015 华南师范大学 硕士
2008-2012 华南师范大学 学士
工作经历
2020-至今 南方科技大学 研究助理教授
2019-2020 南方科技大学 访问学者
研究领域
固态锂金属电池材料和锂硫电池电极材料的相关研究。
所获荣誉
深圳市海外高层次人才B类人才
代表文章专利
(1) Lin, H.; Yang, L.; Jiang, X.; Li, G.; Zhang, T.; Yao, Q.; Zheng, G. W.; Lee, J. Y. Electrocatalysis of polysulfide conversion by sulfur-deficient MoS2 nanoflakes for lithium–sulfur batteries. Energy & Environmental Science 2017, 10 (6), 1476-1486.
(2) Lin, H.; Zhang, S.; Zhang, T.; Cao, S.; Ye, H.; Yao, Q.; Zheng, G. W.; Lee, J. Y. A cathode-integrated sulfur-deficient Co9S8 catalytic interlayer for the reutilization of “lost” polysulfides in lithium–sulfur batteries. ACS nano 2019, 13 (6), 7073-7082.
(3) Lin, H.; Zhang, S.; Zhang, T.; Ye, H.; Yao, Q.; Zheng, G. W.; Lee, J. Y. Elucidating the catalytic activity of oxygen deficiency in the polysulfide conversion reactions of lithium–sulfur batteries. Advanced Energy Materials 2018, 8 (30), 1801868.
(4) Lin, H.; Zhang, S.; Zhang, T.; Ye, H.; Yao, Q.; Zheng, G. W.; Lee, J. Y. Simultaneous cobalt and phosphorous doping of MoS2 for improved catalytic performance on polysulfide conversion in lithium–sulfur batteries. Advanced Energy Materials 2019, 9 (38), 1902096.
(5) Ye, Y.; Deng, Z.; Gao, L.; Niu, K.; Zhao, R.; Bian, J.; Li, S.; Lin, H.*; Zhu, J.*; Zhao, Y.* Lithium-rich anti-perovskite Li2OHBr-based polymer electrolytes enabling an improved interfacial stability with a three-dimensional-structured lithium metal anode in all-solid-state batteries. ACS Applied Materials & Interfaces 2021, 13 (24), 28108-28117.
(6) Ye, Y.; Gao, L.; Deng, Z.; Niu, K.; Zhao, R.; Bian, J.; Lin, H.*; Zhu, J.*; Zhao, Y.* Regulating the lithium metal growth by Li3BO3/Li2OHCl solid-state electrolyte for long-lasting lithium metal stripping-plating. Journal of Power Sources 2021, 507, 230299.
(7) Ye, Y.; Ye, X.; Zhu, H.; Bian, J.; Lin, H.*; Zhu, J.*; Zhao, Y.* Elucidating the suppression of lithium dendrite growth with a void-reduced anti-perovskite solid-state electrolyte pellet for stable lithium metal anodes. Journal of Energy Chemistry 2023, 77, 62-69.
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