Welcome to Xi an Jiaotong University School of Materials Science and Engineering

Associate Professor
Xie De-Gang
中文姓名 解德刚

Email: dg.xie@stu.xjtu.edu.cn

Webpage: http://nano.xjtu.edu.cn/web/en/people/teacher/Dega

Research interests:

•   Microscale damage mechanism of metals in hydrogen environment.
•   Electromigration in copper and aluminum interconnects.
•   Electrochemistry of batteries.
•   Superhydrophobicity

Education:

•   Sep. 2010- Mar. 2016    Ph.D Candidate. Major: Materials Science
Xi’an Jiaotong University, Xi’an, Shaanxi, China
•   Aug. 2011-Aug. 2012:
Visiting student at Departments of Material Science and Engineering and Department of Nuclear Science and Engineering.
Massachusetts Institute of Technology, Cambridge, MA, USA.
•   Sep. 2006-Jul. 2010:
B.E. (July 2010). Major: Materials Science & Engineering, Accumulative overall grade point average (GPA) was 3.7/4.0 (87/100). Rank at 10/100.
Bachelor thesis: “Fabricating superhydrophobic surfaces on metals” (2010)
Xi’an Jiaotong University, Xi’an, Shaanxi, China

Honor & Awards:

•   Certificate of short course, ‘Transmission electronmicroscopy of materials’, Microscopy & Microanalysis 2012 meeting, Phoenix, AZ. (Jul 2012)
•   Rated as ‘excellent’ in leading a project named “Fabrication of low-adhesion, high-speed biomimic water strider based on superhydrophobic materials” (2009-2010), National Innovation Experiment Program for University Students.
•   The National Scholarship(3/120) ,2007-2008

Representative Publications:

1. Xie, D.-G.; Wang, Z.-J.; Sun, J.; Li, J.; Ma, E.; Shan, Z.-W., In situ study of the initiation of hydrogen bubbles at the aluminium metal/oxide interface. Nat. Mater. 2015, 14 (9), 899-903.

2. Wang, Y.-C.; Xie, D.-G.; Ning, X.-H.; Shan, Z.-W., Thermal treatment-induced ductile-to-brittle transition of submicron-sized Si pillars fabricated by focused ion beam. Appl. Phys. Lett. 2015, 106 (8), 081905.

3. Xie, D.; Li, W., A novel simple approach to preparation of superhydrophobic surfaces of aluminum alloys. Appl. Surf. Sci. 2011, 258 (3), 1004-1007.

4. Zhang D., Chen F., Fang G., Yang Q., Xie D., Qiao G., Li W., Si J., Hou X. Wetting characteristics on hierarchical structures patterned by a femtosecond laser. Journal of Micromechanics and Microengineering 2010; 20:075029.

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