姓 名: 李苏植
职称: 教授
所在院系: 强度室
联系电话:
个人主页: http://gr.xjtu.edu.cn/web/lisuzhi
E-MAIL: lisuzhi@xjtu.edu.cn
专业方向: 材料学
个人详情

研究领域或方向

l 纳米材料的力学行为

l 固体超润滑材料

l 畴界工程

l 二维材料的力电耦

工作经历

l 2018.05─至今,   西安交通大学,材料科学与工程学院,教授

l 2016.01─2018.04,德国卡尔斯鲁厄理工大学,博士后研究员

l 2013.10─2015.12,德国卡尔斯鲁厄理工大学,洪堡学者

科研项目

l 中组部“青年千人”计划项目

l 西安交通大学“青年拔尖人才”计划项目

学术成果

长期致力于有关界面运动、缺陷演化及相互作用对材料摩擦和力学变形的影响等方面的研究。迄今已在核心期刊上发表论文近20篇,以第一作者/通讯作者身份发表10篇, 包括 Nature, Nano Lett, Adv Funct Mater, Acta Mater, Phys Rev B等。研究工作被NatureNews & ViewsNPG Asia MaterialsResearch Highlight等专栏报道。部分成果作为项目主要内容,入选2010中国高校十大科技进展

 

代表论文:

[1] S. Li, Q. Li*, R. W. Carpick*, P. Gumbsch, X.-Z. Liu, X. Ding, J. Sun and J. Li*, “The evolving quality of frictional contact with graphene”, Nature, 539, 541-546 (2016).

[2] Y. Yang, S. Li*, X. Ding*, J. Sun and E. K. H. Salje*, “Interface driven pseudo-elasticity in alpha-Fe nanowires”, Advanced Functional Materials, 26, 760-767 (2016).

[3] S. Li, X. Ding*, J. Li*, X. Ren, J. Sun and E. Ma*, “High-efficiency mechanical energy storage and retrieval using interfaces in nanowires”, Nano Letters, 10, 1774-1779 (2010).

[4] S. Li, Y. Li, Y.-C. Lo, T. Neeraj*, R. Srinivasan, X. Ding, J. Sun, L. Qi, P. Gumbsch and Ju Li*, “The interaction of dislocations and hydrogen-vacancy complexes and its importance for deformation-induced proto nano-voids formation in alpha-Fe”, International Journal of Plasticity, 74, 175-191 (2015).

[5] S. Li*, E. K. H. Salje, J. Sun and X. Ding*, “Large recovery of six-fold twinned nanowires of -Fe”, Acta Materialia, 125, 296-302 (2017).

[6] S. Li, X. Ding*, J. Ren*, X. Moya, J. Li, J. Sun and E. K. H. Salje*, “Strain-controlled thermal conductivity in ferroic twinned films”, Scientific Reports, 4, 6375 (2014).

[7] S. Li, X. Ding*, J. Deng, T. Lookman*, J. Li, X. Ren, J. Sun, and A. Saxena, “Superelasticity in bcc nanowires by a reversible twinning mechanism”, Physical Review B, 82, 205435 (2010).

[8] S. Li, X. Ding*, J. Li*, X. Ren, J. Sun, E. Ma* and T. Lookman, “Inverse martensitic transformation in Zr nanowires”, Physical Review B, 81, 245433 (2010).

[9] D. X, S. Li, M. Li, Z. Wang, P. Gumbsch, J. Sun, E. Ma, J. Li* and Z. Shan*, “Hydrogenated vacancies lock dislocations in aluminium”, Nature Communications, 7, 13341 (2016)

[10] Q. Ding, S. Li, L.-Q. Chen*, X. Han, Z. Zhang, Q. Yu*, J. Li*, “Re segregation at interfacial dislocation network in a nickel-based superalloy”, Acta Materialia, 154, 137-146 (2018).

 

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