• 姓名: 李金
  • 职称: 副教授
  • 学位: 博士
  • 湘潭大学
  • 物理与光电工程学院
硕士生导师
副教授
lijin@xtu.edu.cn
物理与光电工程学院
个人简介

李金,湘潭大学物理与光电工程学院讲师。2010年6月,在湘潭大学物理与光电工程学院获得凝聚态物理博士学位;2010年10月至2013年9月,于美国加州州立大学北岭分校从事博士后研究工作;2013年10月至今,在湘潭大学物理与光电工程学院从事教学研究工作。长期从事计算材料学、第一性原理方面的理论研究工作,在低维纳米材料、表面与界面、材料缺陷以及拓扑绝缘体等研究领域开展过广泛的研究,具有深厚的相关理论基础,并精通相关的计算模拟手段。其研究成果发在The Journal of Physical Chemistry Letters、Carbon、Nanoscale、Physical Review Applied、Science Bulletin、Scientific Reports、Physical Review B、Journal of Applide Physics 等国际知名物理期刊发表学术论文30余篇,被Reports on Progress in Physics、Nano Letts.、 Phys. Rev. Lett.、ACS nano、Phy. Rev. B等引用1200余次,受到国际同行高度评价。现担当Nanotechnology、Europhysics Letters、Physica E、The Journal of Physics and Chemistry of Solids等期刊的通讯评审人。主持国家自然科学基金青年基金、国家自然科学理论物理专项基金、湖南省教育厅创新平台开发基金和湖南省教育厅优秀青年项目各一项。

学习工作经历

2001.09-2005.06 湘潭大学,材料与光电物理学院读本科,获得理学学士学位

2005.09-2010.06 湘潭大学,材料与光电物理学院硕博连读,获得凝聚态物理博士学位

2010.10-2013.09 美国加州州立大学北岭分校,物理系,博士后

2013.10-2015.12 湘潭大学,物理与光电工程学院,讲师

2016.01-至今 湘潭大学,物理与光电工程学院,副教授

研究方向

1、低维纳米材料、表面与界面、材料缺陷以及拓扑绝缘体

2、纳米光电材料及光电输运

科研项目

1、主持国家自然科学基金青年项目一项,2015/01–2017/1;

2、主持国家自然科学基金理论物理专项基金一项,2014/01–2014/12;

3、主持湖南省教育厅创新平台开发基金项目,2016/09-2018/09;

4、湖南省教育厅优秀青年项目一项,2020/09-2022/09;

主要代表性论文

42. High-Throughput Screening of Two-Dimensional Planar sp2 Carbon Space Associated with a Labeled Quotient Graph. Xizhi Shi,| Shifang Li,| Jin Li,* Tao Ouyang, Chunxiao Zhang, Chao Tang, Chaoyu He,* and Jianxin Zhong. J. Phys. Chem. Lett. 2021, 12, 11511-11519.

41. New Two-Dimensional Wide Band Gap Hydrocarbon Insulator by Hydrogenation of a Biphenylene Sheet. Yujie Liao, XiZhi Shi, Tao Ouyang, Jin Li,* Chunxiao Zhang, Chao Tang, Chaoyu He,* and Jianxin Zhong. J. Phys. Chem. Lett. 2021, 12, 8889-8896.

40. Epitaxial Growth of Quasi-One-Dimensional Bismuth-Halide Chains with Atomically Sharp Topological Non-Trivial Edge States. Jincheng Zhuang,* Jin Li, Yundan Liu, Dan Mu, Ming Yang, Yani Liu, Wei Zhou, Weichang Hao, Jianxin Zhong,* and Yi Du。ACS Nano 2021, 15, 9, 14850-14857.

39. Resolving the intrinsic bandgap and edge effect of BiI3 film epitaxially grown on graphene. Dan Mu, Wei Zhou, Yundan Liu,***, Jin Li, Ming Yang, Jincheng Zhuang*, Yi Du, Jianxin Zhong. Materials Today Physics 20 (2021) 100454.

38. Type-II lateral SnSe/GeTe heterostructures for solar photovoltaic applications with high efficiency. Qianyong Zhuang, Jin Li,* Chaoyu He, Tao Ouyang, Chunxiao Zhang, Chao Tang* and Jianxin Zhong. Nanoscale Adv. (2021) 3, 3643-3649.

37. Bayesian optimization-based design of defect gamma-graphyne nanoribbons with high thermoelectric conversion effificiency. Chunfeng Cui, Tao Ouyang *, Chao Tang **, Chaoyu He, Jin Li, Chunxiao Zhang, Jianxin Zhong. Carbon 176 (2021) 52-60.

36. New structure candidates for the experimentally synthesized heptazine-based and triazine-based two dimensional graphitic carbon nitride. Luneng zhao, Xizhi Shi, Jin Li*, Tao Ouyang, Chunxiao Zhang, Chao Tang, Chaoyu He* and Jianxin Zhong. Physica E 128, 114535 (2021).

35. Newly discovered graphyne allotrope with rare and robust Dirac node loop. Pinglan Yan,b Tao Ouyang*, Chaoyu He*, Jin Li*, Chunxiao Zhang, Chao Tang and Jianxin Zhong. Nanoscale 13, 3564-3571 (2021).

34. Two-Dimensional Carbon Allotropes and Nanoribbons based on 2,6-Polyazulene Chains: Stacking Stabilities and Electronic Properties. Jin Li, Shifang Li, Tao Ouyang*, Chunxiao Zhang, Chao Tang, Chaoyu He*, and Jianxin Zhong. J. Phys. Chem. Lett. 12, 732?738 (2021).

33. Few-Layer β-SnSe with Strong Visible Light Absorbance and Ultrahigh Carrier Mobility. Zhenqing Li, Jin Li*, Chaoyu He, Tao Ouyang, Chunxiao Zhang, Sifan Zhang, Chao Tang, Rudolf A. R?mer, and Jianxin Zhong*. Physical Review Applied 13, 014042 (2020).

32. Space-confined and substrate-directed synthesis of transition-metal dichalcogenide nanostructures with tunable dimensionality. Zhuojun Duan, Tao Chen, Jianwei Shi, Jin Li, Kui Song, Chan Zhang, Sujuan Ding, Bo Li, Guang Wang, Sigui Hu, Xiaoyue He, Chaoyu He, Hua Xu, Xinfeng Liu, Chuanhong Jin, Jianxin Zhong and Guolin Hao. Science Bulletin 65, 1013–1021 (2020).

31. Theoretical prediction of low-energy Stone-Wales graphene with an intrinsic type-III Dirac cone. Zhenhao Gong, Xizhi Shi, Jin Li*, Shifang Li, Chaoyu He*, Tao Ouyang, Chunxiao Zhang, Chao Tang and Jianxin Zhong. Phys. Rev. B 101, 155427 (2020).

30. Photogalvanic-Effect-Induced Spin-Polarized Current in Defective Silicane with H Vacancies. Zhentao Fu, Pinglan Yan, Jin Li*, Chaoyu He, Tao Ouyang, Chunxiao Zhang, Chao Tang, and Jianxin Zhong. Phys. Status Solidi RRL 14, 2000395 (2020).

29. 2D O-PTl monolayer: a robust large bandgap topological insulator. Wenming Xue, Jin Li*, Xiangyang Peng, Chaoyu He, Tao Ouyang, Chunxiao Zhang, Chao Tang, Zhenqing Li , Donglin Lu and Jianxin Zhong. J. Phys. D: Appl. Phys. 53, 025302 (2020).

27. Tunable photoelectronic properties of hydrogenated-silicene/halogenated-silicene superlattices for water splitting. Hao Chen, Pinglan Yan, Jin Li*, Chaoyu He, Tao Ouyang, Chunxiao Zhang, Chao Tang and Jianxin Zhong. J. Appl. Phys. 127, 084301 (2020).

26. Si-Cmma: A silicon thin film with excellent stability and Dirac nodal loop. Na Zhou, Pan Zhou*, Jin Li, Chaoyu He* and Jianxin Zhong. Phys. Rev. B 100, 115425 (2019).

25. Stone-Wales graphene: A two-dimensional carbon semimetal with magic stability. HengChuang Yin, Xizhi Shi, Chaoyu He*, Miguel Martinez-Canales*, Jin Li, Chris J. Pickard*, Chao Tang, Tao Ouyang, Chunxiao Zhang and Jianxin Zhong.  Phys. Rev. B 99, 041405(R) (2019).

24. Electronic and Spin-Dependent Optical Properties of Fe-Adsorbed Armchair Silicene/Silicane Superlattices. Jiao Deng, Jin Li*, Chaoyu He, Tao Ouyang, Chunxiao Zhang, Chao Tang, Zhenqing Li, Yi Tang* and Jianxin Zhong*. Phys. Status Solidi RRL, 14, 1900494 (2020).

23. First principles study of semihydrogenated graphene and topological insulator heterojunction. Wenming Xue, Jin Li , Xiangyang Peng, Chaoyu He, Tao Ouyang, Chunxiao Zhang, Chao Tang, Zhenqing Li , Huating Liu and Jianxin Zhong. J. Phys.: Condens. Matter, 31, 365002 (2019).

22. A comparative investigation of metal (Li, Ca and Sc)-decorated 6,6,12-graphyne monolayers and 6,6,12-graphyne nanotubes for hydrogen storage. Guang Wu, Jin Li*, Chao Tang*, Tao Ouyang, Chaoyu He, Chunxiao Zhang and Jianxin Zhong. Applied Surface Science 498, 143763 (2019).

21. Strain effects on magnetic states of monolayer MoS2 doped with group IIIA to VA atoms. Sifan Zhangb, Zhenqing Li, Jin Li*, Guolin Hao, Chaoyu He, Tao Ouyang, Chunxiao Zhang, Chao Tang and Jianxin Zhong.  Physica E: Low-dimensional Systems and Nanostructures 114, 113609 (2019).

20. Complex Low Energy Tetrahedral Polymorphs of Group IV Elements from First Principles. Chaoyu He*, Xizhi Shi, S. J. Clark, Jin Li, Chris J. Pickard, Tao Ouyang, Chunxiao Zhang, Chao Tang, and Jianxin Zhong. Physical Review Letter 121, 175701 (2018).

19. Thermal and thermoelectric properties of monolayer indium triphosphide (InP3): a firstprinciples study. Tao Ouyang*, Enlai Jiang, Chao Tang*, Jin Li, Chaoyu He and Jianxin Zhong. J. Mater. Chem. A 6, 21532–21541 (2018).

18. First-principles study of magnetic properties of ultra-thin MoSi2 films. Qiong Peng, Jin Li*, Chaoyu He, Chao Tang, and Jianxin Zhong. Journal of Applied Physics 123, 104304 (2018).

17. Effect of hydrogen passivation on the decoupling of graphene on SiC(0001) substrate: First-principles calculations. Kang Liu, PinglanYan, Jin Li*, Chaoyu He, Tao Ouyang, Chunxiao Zhang, Chao Tang*, and Jianxin Zhong. Scientific RepoRts, 7, 8461 (2017).

16. Ab initio prediction of a new allotrope of two-dimensional silicon. Jiang Tang, Jin Li*,  Chaoyu He, Chunxiao Zhang, Tao Ouyang, Chao Tang, Huaping Xiao, and Jianxin Zhong. Phys. Status Solidi RRL 11, 1600422 (2017).

15. Graphdiyne nanoribbons with open hexagonal rings: Existence of topological unprotected edge states. Cong Chen, Jin Li, and Xian-Lei Sheng*. Physics Letters A 381, 3337–3341 (2017).

14. Strain engineering of magnetic state in vacancy-doped phosphorene. Jie Ren, Chunxiao Zhang*, Jin Li, Zhixin Guo, Huaping Xiao*, and Jianxin Zhong. Physics Letters A 380, 3270–3277 (2016).

13. Two-dimensional topological insulators with tunable band gaps: Single-layer HgTe and HgSe. Jin Li, Chaoyu He, Lijun Meng, Huaping Xiao, Chao Tang, Xiaolin Wei, Jinwoong Kim, Nicholas Kioussis, G. Malcolm Stocks, and Jianxin Zhong.  Scientific Reports 5, 14115 (2015).

12. First principles study of electronic properties of MoSi2 thin films. Qiong Peng, Chaoyu He, Jin Li*, and Jianxin Zhong*.  Acta Physica Sinica 64, 047102 (2015).

11. Electric tuning of the surface and quantum well states in Bi2Se3 films: a first-principles study. Hong Yang, Xiangyang Peng, Wenliang Liu, Xiaolin Wei, Guolin Hao, Chaoyu He, Jin Li, G. Malcolm Stocks, and Jianxin Zhong.  Journal of Physics: Condensed Matter 26, 395005 (2014).

10. Predicted topological phase transition in the SmS Kondo insulator under pressure. Zhi Li, Jin Li, Peter Blaha, and Nicholas Kioussis.  Physical Review B 89, 121117(R) 2014.

9. Strain-induced topological insulator phase transition in HgSe. Lars Winterfeld, Luis A. Agapito,  Jin Li, Nicholas Kioussis, Peter Blaha, and Yong P. Chen  Physical Review B 87, 075143 (2013).

8. Non-orthogonal tight-binding model for tellurium and selenium.  Jin Li, A. Ciani, J. Gayles, D. A. Papaconstantopoulos, Nicholas Kioussis, C. Grein, and F. Aqariden.  Philosophical Magazine 93, 3216 (2013).

7. Thermodynamic and stoichiometric stability of the Cd-terminated CdTe (111) surface. Jin Li, Nicholas Kioussis, F. Aqariden, and C. Grein.  Physical Review B 85, 235306 (2012).

6. Ab Initio Studies of the Unreconstructed Polar CdTe (111) Surface. Jin Li, Jacob Gayles, Nicholas Kioussis, Z. Zhang, C. Grein, and F. Aqariden.  Journal of Electronic Materials 41, 2745 (2012).

5. Influence of Surface Polishing on the Structural and Electronic Properties of CdZnTe Surfaces. F. Aqariden, S. Tari , K. Nissanka, Jin Li, N. Kioussis, R. E. Pimpinella, and M. Dobrowolska.  Journal of Electronic Materials 41, 2893 (2012).

4. Strain Effects on Electronic Properties of Boron Nitride Nanoribbons. Jin Li, Lizhong Sun, and Jianxin Zhong.  Chinese Physics Letter 27, 077101 (2010).

3. Structure transition of two-dimensional hexagonal BN under large uniaxial strain. Jin Li, Gui Gui, Lizhong Sun, and Jianxin Zhong.  Acta Physica Sinica 59, 8820 (2010).

2. Band structure engineering of graphene by strain: First-principles calculations. Gui Gui, Jin Li, and Jianxin Zhong.  Physical Review B 78, 075435 (2008).

1. Tunable bandgap structures of two-dimensional boron nitride. Jin Li, Gui Gui, and Jianxin Zhong  Journal of Applied Physics 104, 094311 (2008). 

研究方向

低维纳米材料、表面与界面、材料缺陷以及拓扑绝缘体