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脑机接口时代,我们还能做什么?——脑科学驱动下的神经外科蜕变与新生
Novel Materials Chemistry for Energy and Environmental Applications
清华大学材料科学与工程研究院《材料科学论坛》:超快激光诱导玻璃微纳结构—现象、机...
创新药可及的全球视野和中国现状
报告题目:
Fluidics: Interfacing Biology, Mechanics, and Photonics in the Micro/Nano Scale
 报告人:
Tony Jun Huang
James Henderson Endowed Assistant Professor
Department of Engineering Science and Mechanics
Pennsylvania State University
报告时间:
2008-06-26 10:00
报告地点:
清华大学精仪系9003大楼4304会议室
主办单位:
精仪系
  简介:

Dr. Huang received his Ph.D. degree in Mechanical and Aerospace Engineering from the University of California, Los Angeles (UCLA) in 2005, and his B.S. and M.S. degrees in Energy and Power Engineering from Xi’an Jiaotong University, Xi’an, China, in 1996 and 1999, respectively.  Currently, he is the James Henderson Assistant Professor in the Department of Engineering Science and Mechanics at The Pennsylvania State University.  His research interests include Biomedical NanoElectroMechanicalSystems (BioNEMS), Active Plasmonics, Molecular Mechanics, Nanomaterials/Nanodevices, and Micro fluidics. During his young career, he has received awards and honors such as the 2006 Rustum and Della Roy Innovation in Materials Research Award, by The Pennsylvania State University; “One of the five most intriguing articles in the third quarter of 2005”, by CAS Science Spotlight; the James Henderson Endowed Professorship, by The Pennsylvania State University; Outstanding Ph.D. Award, by UCLA School of Engineering.

 

ABSRACT

Microfluidics is a powerful tool that allows the precise control and manipulation of microliter to nanoliter fluid volumes. In the past two years, the Penn State Biofucntionalized NanoElectroMechanicalSystems (BioNEMS) laboratory has established microfluidic approaches as unique platforms to achieve a fundamental understanding of multiphysics (e.g., biology, fluidics, photonics, acoustics, mechanics) at micro/nano scale and the integration and automation of complex tasks that are difficult to achieve otherwise. This talk will summarize our progress along this line, including tunable optofluidic lens, three-dimensional (3-D) hydrodynamic focusing, and track-free dynamic patterning of biomolecules.
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