Two dimensional array of piezoresistive nanomechanical Membrane-type Surface Stress Sensor (MSS) with improved sensitivity

We present a new generation of piezoresistive nanomechanical Membrane-type Surface stress Sensor (MSS) chips, which consist of a two dimensional array of MSS on a single chip. The implementation of several optimization techniques in the design and microfabrication improved the piezoresistive sensiti...

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Published inSensors (Basel, Switzerland) Vol. 12; no. 11; pp. 15873 - 15887
Main Authors Yoshikawa, Genki, Akiyama, Terunobu, Loizeau, Frederic, Shiba, Kota, Gautsch, Sebastian, Nakayama, Tomonobu, Vettiger, Peter, de Rooij, Nico F, Aono, Masakazu
Format Journal Article
LanguageEnglish
Published Switzerland MDPI AG 01.11.2012
Molecular Diversity Preservation International (MDPI)
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Summary:We present a new generation of piezoresistive nanomechanical Membrane-type Surface stress Sensor (MSS) chips, which consist of a two dimensional array of MSS on a single chip. The implementation of several optimization techniques in the design and microfabrication improved the piezoresistive sensitivity by 3~4 times compared to the first generation MSS chip, resulting in a sensitivity about ~100 times better than a standard cantilever-type sensor and a few times better than optical read-out methods in terms of experimental signal-to-noise ratio. Since the integrated piezoresistive read-out of the MSS can meet practical requirements, such as compactness and not requiring bulky and expensive peripheral devices, the MSS is a promising transducer for nanomechanical sensing in the rapidly growing application fields in medicine, biology, security, and the environment. Specifically, its system compactness due to the integrated piezoresistive sensing makes the MSS concept attractive for the instruments used in mobile applications. In addition, the MSS can operate in opaque liquids, such as blood, where optical read-out techniques cannot be applied.
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ISSN:1424-8220
1424-8220
DOI:10.3390/s121115873