购彩中心

 

李林森长聘(教轨)副教授

电子邮件:linsenli@o-bontemps.com
通讯地址:上海市东川路800号购彩大厅 A楼208室
个人主页: //www.linsengroup.com

  • 教育背景

    2010.7-2015.6  美国威斯康辛大学麦迪逊分校,化学博士,导师:Prof. Song Jin

    2006.9-2010.7  复旦大学,化学学士,导师:余承忠教授

  • 工作经历

    2017.9至今,购彩中心-购彩大厅 ,特别研究员,博士生导师

    2015.7-2017.8  美国麻省理工学院,合作导师:Prof. Yet-Ming Chiang (美国工程院院士)

  • 研究方向

    1)先进电池材料:主要包括单晶型NMC,无钴正极-镍酸锂LiNiO和钠离子电池材料

    2)电子显微-谱学联用技术和同步辐射谱学成像技术

    3)高比能锂金属电池、浆料电池(Semi-Solid Batteries)

    4)电池回收技术


  • 科研项目

    主持国家自然基金青年项目1项,科技部重点研发项目课题子任务1项,上海市自然基金项目1项,上海市青年科技启明星项目1项,装备预研项目重点基金子课题1项,企业合作项目12项。作为研究骨干参与国家自然基金重大项目1项。

  • 代表性论文专著

    层状氧化物正极材料

    1)  G. Qian, Y. Zhang, L. Li,* R. Zhang, J. Xu, Z. Cheng, S. Xie, H. Wang, Q. Rao, Y. He, Y. Shen, L.Chen, M. Tang,* Z.-F Ma,* Single-crystal nickel-rich layered-oxide battery cathode materials: synthesis, electrochemistry, and intra-granular fracture, Energy Storage Mater. 2020, 27, 140.

    2)  W. Bao, G. Qian, L. Zhao, Y. Yu, L. Su, X. Cai, H. Zhao, Y. Zuo, Y. Zhang, H. Li, L. Li*, J. Xie*. Simultaneous enhancement of interfacial stability and kinetics of single-crystal LiNi0.6Mn0.2Co0.2O2 through optimized surface coating and doping, Nano Lett. 2020, 20, 8832-8840.

    3) G. Qian, H. Huang, F. Hou, W. Wang, J. Lin, S. Lee, H. Yan, Y. Chu, P. Pianetta, X. Huang,* Z.-F Ma,* L. Li,* Y. Liu.* Selective dopant segregation modulates mesoscale reaction kinetics in layered transition metal oxide. Nano Energy, 2021, 84: 105926.

    4) X. Li, L. Zhou, H. Wang, D. Meng, G. Qian, Y. Wang, Y. He, Y. Wu, Z. Hong*, Z.-F Ma, L.Li.* Dopants modulate crystal growth in molten salts enabled by surface energy tuning. J. Mater. Chem. A, 2021, 9, 19675-19680.

    5) S. Li, G. Qian, X. He, X. Huang, S.-J. Lee, Z. Jiang, Y. Yang, W. Wang, D. Meng, C. Yu, J.-S. Lee, Y. S. Chu, Z.-F. Ma, P. Pianetta, J. Qiu,* L. Li,* K. Zhao,* Y. Liu*, Thermal-healing of lattice defects for high-energy single-crystalline battery cathodes. Nature Commun. 2022, 13, 704.

    6) G. Qian, J. Wang, H. Li, Z.-F Ma, P. Pianetta,  L. Li,* X. Yu,* Y. Liu.* Structural and chemical evolution in layered oxide cathodes of lithium-ion batteries revealed by synchrotron techniques. National Science Review, 2022, 9, nwab146. (Review)


    表征技术及其在电池研究中的应用:

    1) G. Qian, J. Zhang, S. Chu, J. Li, K. Zhang, Q. Yuan, Z.-F Ma, P. Pianetta, L. Li,* K Jung,* Y. Liu.* Understanding the Mesoscale Degradation in Nickel-Rich Cathode Materials through Machine-Learning-Revealed Strain–Redox Decoupling. ACS Energy Lett. 2021, 6, 687-693.   (EXAFS Imaging)

    2) G. Qian, G. Zan, J. Li, S.-J. Lee, Y. Wang, Y. Zhu, S. Gul, D. J. Vine, S. Lewis, W. Yun, Z.-F. Ma, P. Pianetta, J.-S. Lee, L. Li,* Y. Liu*, Structural, Dynamic, and Chemical Complexities in Zinc Anode of an Operating Aqueous Zn-Ion Battery, Adv. Energy Mater. 2022, Early View, 2200255 (Front Cover; X-ray CT)

    3) W. Wang, D. Meng, G. Qian, S. Xie, Y. Shen, L. Chen, X. Li, Q. Rao, H. Che, J. Liu, Y. He, Z. Ma, L. Li.* Controlling the Particle Size and Phase Purity of "Single-Crystal" LiNi0.5Mn1.5Oin Molten-Salt-Assisted Synthesis, J. Phys. Chem. C. 2020, 124, 51, 27937-27945. (SEM-Raman)

    4) G. Qian, Monaco F, D. Meng, S. Lee, G. Zan, J. Li,  D. Karpov, S. Gul, D. Vine, B. Stripe, J. Zhang, J. Lee, Z.-F Ma, W. Yun, P. Pianetta, X. Yu, L. Li,* P. Cloeten,* Y. Liu.* The role of structural defects in commercial lithium-ion batteries. Cell Reports Phy. Sci. 2021: 100554. (SEM-Raman)

    5) Y. Sun, H. Wang,* D. Meng, X. Li, X.-Z Liao, H. Che, G. Cui, F. Yu, W. Yang, L. Li,* Z.-F. Ma*, Degradation mechanism of O3-type NaNi1/3Fe1/3Mn1/3O2 cathode materials during ambient storage and their in situ regeneration, ACS Appl. Energy Mater. 2021, 4, 2061-2067. (SEM-Raman)


    锂金属负极:

    1) Y. Zhu, V. Pande, L. Li,* B. Wen, M. Pan, D. Wang, Z.-F. Ma, V. Viswanathan,* Y.-M. Chiang*, Design Principles for Self-Forming Interfaces Enabling Stable Lithium Metal Anodes, Proc. Natl. Acad. Sci. U.S.A., 2020, DOI: 10.1073/pnas.2001923117

    2) Y. Zhu, Y. Wang, M. Xu, Y. Wu, W.g Tang, D. Zhu, Y.-S. He, Z.-F. Ma, L. Li*, Tracking Pressure Changes and Morphology Evolution of Lithium Metal Anodes. Acta Phys. -Chim. Sin., 2110040.


    电池回收技术:

    1)G. Qian, Z. Li, Y. Wang, X. Xie, Y.-S. He, J. Li, Y. Zhu, S. Xie, Z. Cheng, H. Che, Y. Shen, L. Chen, X. Huang, P. Pianetta, Z.-F. Ma, Y. Liu*, L. Li*, Value-creating upcycling of retired electric vehicle battery cathodes, Cell Reports Phy. Sci. 2022, 3, 100741. 


    独立之前代表性工作:

    1)  L. Li, R.M. Erb, J. Sander, J.J. Wang, J. Wang, Y.-M. Chiang,Fabrication of Low‐Tortuosity Ultrahigh‐Area‐Capacity Battery Electrodes through Magnetic Alignment of Emulsion‐Based Slurries, Adv. Energy Mater. 9, 1802472 (2019)

    2)  H. Liang*, L. Li*, Y.K. Chen-Wiegart, J.J. Wang, K. Xiang, L. Gan, W.J. Li, F. Meng, J. Wang, Y.-M. Chiang, S. Jin,* M. Tang,* Two-Dimensional Li Diffusivity and Probable Hybrid Phase Transformation Kinetics in Olivine Lithium Iron Phosphate (LiFePO4), Nature Commun. 1, 1194 (2017) (* corresponding author)

    3)  L. Li, R. Jacobs, P. Gao, F. Wang, D. Morgan, S. Jin,* Origins of Large Voltage Hysteresis in High Energy-Density Metal Fluoride Lithium-Ion Battery Conversion Electrodes, J. Am. Chem. Soc. 138, 2838 (2016)
    4)  L. Li, Y. K. Chen-Wiegart, J. Wang, P. Gao, Q. Ding, Y.-S. Yu, F. Wang, J. Cabana, J. Wang, S. Jin,* Visualization of Electrochemically Driven Solid State Phase Transformations Using Operando Hard X-ray Spectro-Imaging, Nature Commun. 6, 6883 (2015)
    5)   L. Li, F. Meng, S. Jin,* High-Capacity Lithium-Ion Battery Conversion Cathodes Based on Iron Fluoride Nanowires and Insights into the Conversion Mechanism, Nano Lett. 12, 6030 (2012)

  • 荣誉奖励

    2021 四川省天府英才(依托上海交大四川研究院)

    2020 上海市青年科技启明星C类

    2017 国家高层次海外人才计划

    2015年英国皇家学会牛顿国际奖学金(获奖,未接受)

    2014 年中国海外优秀自费留学生奖学金

    2014 年材料学会 (Materials Research Society) 研究生金奖

    2014 年美国威斯康辛大学Richard and Joan Hartl Excellence in Research Award

  • 教学工作

    主要负责课程:

    物理化学(荣誉致远计划本科生,2022起)

    原位物质结构表征技术(2021年新开设的研究生专业选修课)

    学术伦理规范与写作(研究生,2020年至今)

    科技英语与交流(英文,荣誉致远计划博士生)

    化工工艺学(部分课程,2022起)

    无机分析与实验(本科生)

    ET创新实验(本科生)

  • 人才需求

    博士后1-2名(电池材料的显微图像处理、电池管理系统方向)

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