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环境学术沙龙第653期:物质资源循环利用中的碳排放探讨:以CCU系统集成、生物质利用...
天文系Colloquium:Physical Mechanisms Regulating Gas Supply to Galaxies
环境学术沙龙第652期:日常生活塑料用品微塑料的释放
Boundary induced dynamical phase transition via inhomogeous quenches
报告题目:
Chemical Specificity in Nanomechanical Sensors
 报告人:
Hai-Feng Ji
Institute for Micromanufacturing, Louisiana Tech University, Ruston, LA 71272
报告时间:
2005-06-10 10:30
报告地点:
微电子学研究所 (9003大楼北侧)310会议室
主办单位:
微电子学研究所
  简介:

 

  Advances in the field of micro/nano-electro-mechanical systems (MEMS and NEMS) now offer unique opportunities in the design of small and ultrasensitive analytical methods. MEMs/NEMs have demonstrated their unique advantages when they are combined with chemistry and biology, including fast, real-time responses. In addition, MEMs and NEMS are small enough to be integrated into other devices. One of the most promising MEMs is microcantilevers, which have been proven to be an outstanding transducer for chemical and biological sensors.

 

  The chemical specificity can be achieved by selection of appropriate receptors that recognize the target analyte and the recognition event can be converted into a measurable nanomechanical signal. The receptors are categorized as chemical receptors and bioreceptors. So far, the chemical receptors used for nanomechanical sensors include crown ethers, calixarenes, specific functional groups, etc. Bioreceptors include enzyme, antibody, microorganism, cell, etc. Receptor immobilization methods applied to nanomechanical sensors include self-assembled monolayers, layer-by-layer technique, polymer doping approach, and conjugation chemistries.

 

  In this presentation, the author will summarize the receptors and immobilization approaches reported for nanomechanical sensors and interpret the mechanism and dynamic relationship of recognition induced nanomechanical motions.

 

  Dr. Hai-Feng Ji received his PhD degree of chemistry from Chinese Academy of Science, China, in 1996. After his graduation, he spent one year as a postdoctoral associate in University of Florida under supervision of Dr. Kirk Schanze, then worked under Dr. Thomas Thundat in Oak Ridge National Laboratory between 1998-2000. In 2000, he joined the faculty in the Institute for Micromanufacturing at Louisiana Tech. He is currently the EnvironMEMS group leader at Louisiana Tech. His research interests focus on MEMS devices, surface modification, and nanoassembly. He is currently a co-author of 55 peer-viewed journal articles and book chapters and is one of the most-active researchers in the microcantilever sensors field.

 

 

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