Semiconductor nanowire growth |
We use metal-catalyzed chemical vapor deposition for the growth of SiGe alloy nanowires, Si and Ge heterojunction nanowires, and Si nanowires with chemical doping, which are potentially useful for electronic, optoelectronic, and thermoelectric applications.
|
Oxide thin film growth |
Atomic layer deposition is an excellent method for conformal growth of thin films with uniform thickness. We use this method to deposit oxide layers, e.g. TiO2 and Al2O3, on the surface of nanostructures for making heterojunction nanomaterials and electronic devices.
|
Large-area graphene growth |
Scaling up the growth of high- quality graphene is essential for its future applications in transparent electrodes for display devices. We investigate the mechanism and perfection of graphene growth on metal surfaces, and meanwhile developing methods to integrate graphene with electronic devices.
|
Analytical transmission electron microscopy analysis |
Analytical transmission electron microscopy is useful for characterizing the properties of nanomaterials, such as element distribution, strain, and interfacial structures. We are also developing in-situ electron microscopy techniques for studying material growth. |
Professor |
溫政彥 Cheng-Yen Wen
|
Ph.D. Students | |
余家濠 Chia-Hao Yu |
魏川育 Chuan-Yu Wei |
Master Students | |
洪郁婷 Yu-Ting Hung | 李欣諭 Hsin-Yu Lee |
呂哲維 Che-Wei Lu | 汪奕達 Yi-Da Wang |
曹晉瑋 Chin-Wei Tsao |
陳友銓 Yu-Chuan Chen |
Undergraduate Students | ||
孫宇韜 Yu-Tao Sun | 陳昱宇 Yu-Yu Chen | 劉子誠 Tzu-Cheng Liu |
劉庭綸 Ting-Ran Liu | 陳承佑 Cheng-You Chen | 林昱晴 Yu-Ching Lin |
劉冠廷 Guan-Ting Liu |
吳宜方 Yi-Fang Wu |