发明授权
US07959873B1 Biological detection based on differentially coupled nanomechanical systems using self-sensing cantilevers with attonewton force resolution 有权
基于差分耦合纳米机械系统的生物检测,使用自感悬臂与分子力分解

Biological detection based on differentially coupled nanomechanical systems using self-sensing cantilevers with attonewton force resolution
摘要:
A biosensor is comprised of a free and a biofunctionalized recognition self-sensing nanocantilever, a dock adjacent to the ends of the nanocantilevers, and a gap between the nanocantilevers and dock. The self-sensing cantilevers each include a semiconductor piezoresistor defined in a pair of legs about which the cantilevers flex. A bias power or current is applied to the piezoresistor. The sensitivity of the cantilevers is optimized for a given ambient temperature and geometry of the cantilevers and dock by minimizing the force spectral density, SF, of the cantilevers to determine the optimum bias power, Pin. A sub-aN/√Hz force sensitivity is obtained by scaling down the dimensions of the cantilevers and supplying an optimum bias power as a function of temperature and geometry.
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