Parylene-coated NMOSFET-embedded cantilevers for surface stress sensing in liquid environment | IEEE Conference Publication | IEEE Xplore

Parylene-coated NMOSFET-embedded cantilevers for surface stress sensing in liquid environment


Abstract:

This paper reports a parylene-coated nMOSFET (n-type metal-oxide-semiconductor field-effect transistor)-embedded cantilever, which is suitable for the detection of chemic...Show More

Abstract:

This paper reports a parylene-coated nMOSFET (n-type metal-oxide-semiconductor field-effect transistor)-embedded cantilever, which is suitable for the detection of chemical or biological molecules in liquid phase based on the surface stress sensing principle. The silicon cantilevers are configured along <;110> direction, and the channels of the embedded-nMOSFETs are perpendicular to the cantilevers. The fabrication process based upon POST-CMOS (complementary MOS) technology for making these devices on silicon-on-insulator (SOI) wafers is reported. The functionality of the sensor is preliminarily proven by the detection of 1-octanethiol in absolute ethanol.
Date of Conference: 20-23 January 2010
Date Added to IEEE Xplore: 30 September 2010
ISBN Information:
Conference Location: Xiamen, China

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