王稳,副研究员,博士生导师,德国洪堡基金研究员,美国哥伦比亚大学博士后,2016年3月进入西南交通大学工作,入选西南交通大学“雏鹰计划”。以第一/通讯作者身份在Nature Communications、Science Advances、Physical Review Letters等国际期刊发表论文30余篇,含高被引论文1篇,物理领域“Top100”论文1篇,2019年“德国物理年会”作特邀报告(约2000选4,报告排序第一),获授权发明专利5项;主持国家自然科学基金面上项目、青年项目、四川省科技项目,骨干参与973项目和国家自然基金委重大项目等;担任Lubricants 原子尺度摩擦磨损专题客座编辑,ACS Nano、The Journal of Physical Chemistry Letters、ACS Applied Nano Materials等国际期刊审稿人。
代表性论文:
[1] Yutao Li, Bozhao Wu, Wengen Ouyang*, Ze Liu† and Wen Wang‡, Experimental decoding and tuning electronic friction of Si nanotip sliding on graphene, Nano Letters, 2024. (IF=10.8, 1区)
[2] Wen Wang*, Yu Zhang, Ashu Wang, Effects of substrate on the nanoscale friction of graphene, Applied Physics Letters. 123, 241602 (2023).
[3] Wen Wang*, Xiao Huang, Yiqing Huang, Yang Wang*, Nanoscale friction of tetrahedral amorphous diamond-like carbon film after thermal annealing, Tribology International, 2023, 190: 109064. (IF=6.2, 1区)
[4] Wen Wang* , Yu Zhang, Zhihong Li, and Linmao Qian*. Controllable Friction on Graphene via Adjustable Interfacial Contact Quality. Advanced. Science. 2023, 2303013. (IF=15.1, 1区)
[5] W Wang*, D Dietzel, A Schirmeisen*. Control of Nanoscale Ripple Formation on Ionic Crystals by Atomic Force Microscopy. Tribology letters, 71, 28 (2023).
[6] Wen Wang*, Dirk Dietzel, Andre Schirmeisen*. Nanoscale Friction across the First Order Charge Density Wave Phase Transition of 1T-TaS2. ACS Appl. Mater. Interfaces, 2023, 15, 3, 4774–4780. (IF=9.5, 1区)
[7] Wen Wang*, Xiang Zhou, Linmao Qian, and Q.-C. He. Effect of temperature-induced contact quality evolution on nanoscale friction. Physical Review B 106, 134103 (2022).
[8] Wen Wang*, Haocheng Lei, Ashu Wang. Temperature dependence of nanoscale friction on topological insulator Bi2Se3 surfaces. Nanotechnology 33 (2022) 395706.
[9] Wen Wang*, Dirk Dietzel, Andre Schirmeisen*. Thermal activation of nanoscale wear. Physical Review Letters, 2021, 126(19): 196101. (IF=8.385, 1区)
[10] Wen Wang, Dirk Dietzel*, Andre Schirmeisen*. Single-asperity sliding friction across the superconducting phase transition. Science Advances, 2020, 6(12) (IF=13.117, 1区)
[11] Wen Wang*, Jian Shen, Q. C. He*. Microscale superlubricity of graphite under various twist angles. Physical Review B, 2019 (99): 054103.
[12] Wen Wang, Tingting Yang, Hongwei Zhu*, and Quanshui Zheng*. Bio-inspired mechanics of highly sensitive stretchable graphene strain sensors. Applied Physics Letters, 2015, 106 (17): 171903.
[13] Wen Wang, Shuyang Dai, Xide Li, Jiarui Yang, David J. Srolovitz & Quanshui Zheng. Measurement of the cleavage energy of graphite. Nature Communications, 2015, 6 (7853).(IF: 17.694, 1区)
[1]微纳米力学
[2]二维材料的表界面力学
[3]微纳尺度摩擦与磨损
[4]碳纳米管海绵力学性能及其应用
欢迎你报考王稳老师的研究生,报考有以下方式:
1、参加西南交通大学暑期夏令营活动,提交导师意向时,选择王稳老师,你的所有申请信息将发送给王稳老师,老师看到后将和你取得联系,点击此处参加夏令营活动
2、如果你能获得所在学校的推免生资格,欢迎通过推免方式申请王稳老师研究生,可以通过系统的推免生预报名系统提交申请,并选择意向导师为王稳老师,老师看到信息后将和你取得联系,点击此处推免生预报名
3、参加全国硕士研究生统一招生考试报考王稳老师招收的专业和方向,进入复试后提交导师意向时选择王稳老师。
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