个人简介
B.S. Mechanical Engineering, Tsinghua University, Beijing, China
M.S. Electrical Engineering, University of Minnesota, Minneapolis, MN
M.S. Biomedical Engineering, University of Minnesota, Minneapolis, MN
Ph.D. Electrical Engineering, University of Minnesota, Minneapolis, MN
研究领域
Nanoengineering
– Microfluidics
– Interfaces
– Nanofabrication
– Nanomaterials
Biomedicine
– Cellular Engineering
– Combinatorial Chemistry
– Neural Bioengineering
– Ophthalmic Engineering
其研究方向主要集中于研发芯片实验室系统、非传统微流控、可穿戴的纳米传感系统,生物医学相关的微纳米制造与加工和多功能纳米界面材料。他创立并领导的加州大学微纳创新实验室(MiNI Lab),建有世界一流的微纳米制造实验设备和技术,其跨领域的科研成果包括:柔性离电子传感技术(Flexible IonTronic Sensing/FITS),微流控冲击打印技术(Microfluidic Adaptive Printing/MAP),表面微纳流体技术(Interfacial Microfluidics),和生物纳米材料与加工(Biomaterial Nanofabrication)受到国际媒体及学术界广泛的关注与报道。
近期论文
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T. Pan† and W. Wei, “From Cleanroom to Desktop: Emerging Micro-Nanofabrication Technology for Biomedical Applications,” Annals of Biomedical Engineering, vol. 39, pp. 600-620, October 2010.
S. Zhao, A. Chen, A. Revzin, and T. Pan†, “Stereomask Lithography (SML): Universal Multi-Object Micro-Patterning Technique for Biological Applications,” Lab Chip, vol. 11, pp. 224-230 (Cover Image), October 2010.
A. Chen, and T. Pan†, “Fit-to-Flow (F2F) Interconnects: Universal Reversible Adhesive-Free Microfluidic Adaptors for Lab-on-a-Chip Systems,” Lab Chip, vol. 11, pp. 727-732, October 2010.
L. Hong, and T. Pan†, “Three-Dimensional Surface Microfluidics Enabled by Spatiotemporal Control of Unconventional Fluidic Interface,” Lab Chip, vol. 10, pp. 3271-3276, Sept 2010.
S. Zhao, H. Cong, and T. Pan†, “Direct Projection on Dry-film Photoresist (DP2): Do-It-Yourself Three-Dimensional Polymer Microfluidics,” Lab Chip, vol. 9, pp. 1128-1132 (Cover Image), April 2009.
H. Cong, A. Revzin, and T. Pan†, “Non-Adhesive PEG Hydrogel Nanostructures for Self Assembly of Highly Ordered Colloids,” Nanotechnology, vol. 20, 075307, pp. 1-8 (Cover Image), Feb 2009.