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Li Zhong

Tel:+86-134-5623-2948

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Email: lizhong@seu.edu.cn

 

 

Resume:

  • Southeast University, Nanjing, Jiangsu Province, China Professor (03/2019 − present), School of Electronic Science and Engineering
  • University of Pittsburgh, Pittsburgh, PA, USA Postdoctoral Associate (12/2015 – 01/2019)
  • Pacific Northwest National Laboratory, Richland, WA, USA Visiting researcher (07/2014 – 05/2015)
  • Brookhaven National Laboratory, Upton, NY, USA Visiting researcher (06/2011 – 08/2011)
  • Sandia National Laboratory, Albuquerque, NM, USA Visiting researcher (01/2010 – 05/2011, 09/2011 – 08/2013)
Research interests:
  • Developing advanced strategies for in-situ atomic-scale TEM characterization
  • Atomistic perspectives on structure-property relationships in nanostructured materials (e.g., the effect of interfaces, surfaces and lattice defects on properties)
  • Deformation mechanisms of small-scale materials
  • Reaction and degradation mechanisms of energy storage materials
Selected Publications:

1. X. Wang, L. Zhong*, and S.X. Mao, Advances in understanding atomic-scale deformation of small-sized face-centered cubic metals with in situ transmission electron microscopy, Materials Today Nano 2, 58-69 (2018)

2. Li Zhong, Frederic Sansoz, Yang He, Chongmin Wang, and Scott X. Mao, Slip-activated surface creep with room-temperature super-elongation in metallic nanocrystals, Nature Materials 16, 439-445 (2017).

3. Li Zhong, Yang Liu, Weiqiang Han, Jianyu Huang, and Scott X. Mao, In situ observation of single-phase lithium intercalation in sub-25-nm nanoparticles, Advanced Materials 29, 1700236 (2017).

4. Yang He, Li Zhong, Feifei Fan, Chongmin Wang, Ting Zhu, and Scott X. Mao, In situ observation of shear-driven amorphization in silicon crystals, Nature Nanotechnology 11, 866-871 (2016).

5. Yingwen Chen, Langli Luo, Li Zhong, Junzheng Chen, Bin Li, Wei Wang, Scott X. Mao, Chongmin Wang, Vincent L. Sprenkle, Guosheng Li, and Jun Liu, Highly reversible zinc-ion intercalation into Chevrel phase Mo6S8 nanocubes and applications for advanced zinc-ion batteries, ACS Applied Materials & Interfaces 8, 13673-13677 (2016).

6. Li Zhong, Jiangwei Wang, Hongwei Sheng, Ze Zhang, and Scott X. Mao, Formation of monatomic metallic glasses through ultrafast liquid quenching, Nature 512, 177-180 (2014).

7. Li Zhong, Robert R. Mitchell, Yang Liu, Betar M. Gallant, Carl V. Thompson, Jian Yu Huang, Scott X. Mao, and Yang Shao-Horn, In situ transmission electron microscopy observations of electrochemical oxidation of Li2O2, Nano Letters 13, 2209-2214 (2013).

8. Jian Yu Huang, Yu-Chieh Lo, Jun Jie Niu, Akihiro Kushima, Xiaofeng Qian, Li Zhong, Scott X. Mao, and Ju Li, Nanowire liquid pumps, Nature Nanotechnology 8, 277-281 (2013).

9. Xiao Hua Liu, Li Zhong, Shan Huang, Scott X. Mao, Ting Zhu, and Jian Yu Huang, Size-dependent fracture of silicon nanoparticles during lithiation, ACS Nano 6, 1522-1531 (2012).

10. Li Zhong, Xiao Hua Liu, Guo Feng Wang, Scott X. Mao, and Jian Yu Huang, Multiple-stripe lithiation mechanism of individual SnO2 nanowires in a flooding geometry, Physical Review Letters 106, 248302 (2011).

11. Xiao Hua Liu, He Zheng, Li Zhong, Shan Huang, Khim Karki, Li Qiang Zhang, Yang Liu, Akihiro Kushima, Wen Tao Liang, Jiang Wei Wang, Jeong-Hyun Cho, Eric Epstein, Shadi A. Dayeh,r S. Tom Picraux,r Ting Zhu, Ju Li, John P. Sullivan, John Cumings, Chunsheng Wang, Scott X. Mao, Zhi Zhen Ye, Sulin Zhang, and Jian Yu Huang, Anisotropic swelling and fracture of silicon nanowires during lithiation, Nano Letters 11, 3312-3318 (2011).

12. Xiao Hua Liu, Li Qiang Zhang, Li Zhong, Yang Liu, He Zheng, Jiang Wei Wang, Jeong-Hyun Cho, Shadi A. Dayeh, S. Tom Picraux, John P. Sullivan, Scott X. Mao, Zhi Zhen Ye, and Jian Yu Huang, Ultrafast electrochemical lithiation of individual Si nanowire anodes, Nano Letters 11, 2251-2258 (2011).

13. Jian Yu Huang, Li Zhong, Chong Min Wang, John P. Sullivan, Wu Xu, Li Qiang Zhang, Scott X. Mao, Nicholas S. Hudak, Xiao Hua Liu, Arunkumar Subramanian, Hongyou Fan, Liang Qi, Akihiro Kushima, and Ju Li, In situ observation of the electrochemical lithiation of a single SnO2 nanowire electrode, Science 330, 1515-1520 (2010).

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
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