Repository logo
Research Data
Publications
Projects
Persons
Organizations
English
Français
Log In(current)
  1. Home
  2. Publications
  3. Article de recherche (journal article)
  4. Compatibility of screen-printing technology with micro-hotplate for gas sensor and solid oxide micro fuel cell development

Compatibility of screen-printing technology with micro-hotplate for gas sensor and solid oxide micro fuel cell development

Author(s)
Viricelle, J.-P.
Pijolat, C.
Riviere. B.
Rotureau. D.
Briand, Danick
de Rooij, Nicolaas F.
Date issued
2006
In
Sensors and Actuators B: Chemical, Elsevier, 2006/118/1-2/263-268
Subjects
Screen-printing Gas sensors Solid oxide fuel cell Single chamber Micro-hotplate
Abstract
Screen-printing technology is widely used in the field of gas sensors and can also be used to fabricate electrodes for solid oxide fuel cell (SOFC). The compatibility of this technique with micro-hotplate is studied to produce micro sensors and micro SOFC. For sensors application, development of inks containing precursor of sensing element allows to decrease annealing temperature and to improve adhesion. For SOFC development, we investigated a new type of device named single-chamber fuel cell (SCFC) for which the fuel and the oxygen are mixed and in contact with both the anode and cathode. Such devices were firstly built at a millimeter scale using LSM for cathode, YSZ for electrolyte and Ni-YSZ cermet for anode. Two types of configuration were studied: SCFC developed on YSZ support with screen-printed electrodes, and SCFC entirely manufactured by screen-printing on a inert ceramic substrate made of alumina. Although weak power densities were measured, around 1 mW/cm2, the feasibility of SCFC was confirmed. Then, preliminary results concerning LSM cathode deposition on micro-hotplate were obtained. LSM layers annealed up to 800 °C resist well to temperature cycling but exhibit low conductivity.
Publication type
journal article
Identifiers
https://libra.unine.ch/handle/20.500.14713/60039
DOI
10.1016/j.snb.2006.04.031
File(s)
Loading...
Thumbnail Image
Download
Name

Viricelle_J.-P.._-_Compatibility_of_screen-printing_technology_with_20100114.pdf

Type

Main Article

Size

666.84 KB

Format

Adobe PDF

Université de Neuchâtel logo

Service information scientifique & bibliothèques

Rue Emile-Argand 11

2000 Neuchâtel

contact.libra@unine.ch

Service informatique et télématique

Rue Emile-Argand 11

Bâtiment B, rez-de-chaussée

Powered by DSpace-CRIS

libra v2.1.0

© 2025 Université de Neuchâtel

Portal overviewUser guideOpen Access strategyOpen Access directive Research at UniNE Open Access ORCIDWhat's new