Micro Total Analysis Systems ’98 1998
DOI: 10.1007/978-94-011-5286-0_13
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An Electronic Nose Based on A Micromechanical Cantilever Array

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Cited by 31 publications
(35 citation statements)
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“…4, different cantilever responses are observed, as also reported in Ref. 7. Measurements are presented on 16 l of methanol, ethanol, and propanol.…”
Section: ͑7͒supporting
confidence: 72%
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“…4, different cantilever responses are observed, as also reported in Ref. 7. Measurements are presented on 16 l of methanol, ethanol, and propanol.…”
Section: ͑7͒supporting
confidence: 72%
“…Different alcohols can therefore be detected by this technique due to their different evaporation rates and not because of different diffusion behaviors or chemical reactions in the resist film. 7 The timescale for alcohol diffusion in a 10 m resist film is expected to be in the subsecond range. 15 Hence, in order to study diffusion in the resist and not in the flow chamber, the response time of the measuring system must be considerably reduced.…”
Section: ͑7͒mentioning
confidence: 99%
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“…Monolithic integration of the cantileverbased transducer with readout electronics provides interesting advantages in terms of size, portability, and cost 10,11 in front of the use of optical readout techniques commonly used. [2][3][4][5][6][7][8][9] In previous works, 10 a post-complementary metal-oxidesemiconductor ͑CMOS͒ fabrication process based on a combination of electron beam lithography and direct write laser lithography has been used in order to define and release the cantilever of fully integrated mass sensors. In this letter, the mechanical structures are defined directly during the standard CMOS process used to fabricate the overall sensor ͑cantilever-based transducer plus readout circuitry ͓Fig.…”
mentioning
confidence: 99%
“…They are employed as the principal sensing element in scanning probe microscopy, 1,2 the detection of chemical or biological analytes in gases or liquids ͑hydrogen, 3 alcohol, 3,4 DNA, 5,6 antibody, 7 Bacillus subtilis spores 8 ͒, calorimetry, 4,9 humidity, 4 and pH ͑Ref. 10͒ measurements, and flow sensing.…”
mentioning
confidence: 99%