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A Micropowered Chemoresistive Sensor Based on a Thin Alumina Nanoporous Membrane and Sn x Bi k Mo y O z Nanocomposite
This work presents and discusses the design of an efficient gas sensor, as well as the technological process of its fabrication. The optimal dimensions of the different sensor elements including their deformation were determined considering the geometric modeling and the calculated moduli of the ela...
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Published in: | Sensors (Basel, Switzerland) Switzerland), 2022-05, Vol.22 (10) |
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Main Authors: | , , , , , , , |
Format: | Article |
Language: | English |
Online Access: | Get full text |
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Summary: | This work presents and discusses the design of an efficient gas sensor, as well as the technological process of its fabrication. The optimal dimensions of the different sensor elements including their deformation were determined considering the geometric modeling and the calculated moduli of the elasticity and thermal conductivity coefficients. Multicomponent Sn
Bi
Mo
O
thin films were prepared by ionic layering on an anodic alumina membrane and were used as gas-sensitive layers in the sensor design. The resistance of the Sn
Bi
Mo
O
nanostructured film at temperatures up to 150 °C exceeded 10
Ohm but decreased to 10
Ohm at 550 °C in air. The sensitivity of the Sn
Bi
Mo
O
composite to concentrations of 5 and 40 ppm H
at 250 °C (10 mW) was determined to be 0.22 and 0.40, respectively. |
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ISSN: | 1424-8220 |
DOI: | 10.3390/s22103640 |