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Updated: Jan 22, 2026

Hybrid Printing for the Fabrication of Smart Sensors
Published on: January 31, 2019
Transfer Printing Technology as a Straightforward Method to Fabricate Chemical Sensors Based on Tin Dioxide Nanowires
Florentyna Sosada-Ludwikowska1, Robert Wimmer-Teubenbacher2, Martin Sagmeister3
1Microelectronics, Materials Center Leoben Forschung GmbH, 8700 Leoben, Austria. florentyna.sosada-ludwikowska@mcl.at.
Abstract:
Metal oxide multi-nanowire-based chemical gas sensors were manufactured by a fast and simple transfer printing technology. A two-step method employing spray pyrolysis deposition and a thermal annealing process was used for SnO 2 nanowires fabrication. A polydimethylsiloxane stamp was used to transfer the SnO 2 nanowires on two different gas sensing devices-Si-based substrates and microhotplate-based platform chips. Both contained a metallic inter-digital electrode structure (IDES), on which the SnO 2 nanowires were transferred for realization of multi-NW gas sensor devices. The gas sensor devices show a very high response towards H 2 S down to the 10 ppb range. Furthermore, a good response towards CO has been achieved, where in particular the microhotplate-based devices exhibit almost no cross sensitivity to humidity.
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