Development of a planar SOFC device using screen-printing technology

被引:65
|
作者
Rotureau, D
Viricelle, JP
Pijolat, C
Caillol, N
Pijolat, M
机构
[1] Ecole Natl Super Mines, LPMG, CNRS, UMR 5148,Ctr SPIN,Dept Microsyst Instrumentat & C, F-42023 St Etienne, France
[2] Ecole Natl Super Mines, LPMG, CNRS, UMR 5148,Ctr SPIN,Dept Procedes & Evolut Syst Ave, F-42023 St Etienne, France
关键词
fuel cell; thick films; electrical properties; ZrO2;
D O I
10.1016/j.jeurceramsoc.2005.03.115
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The aim of this study is to investigate the potentialities of screen-printing technology to manufacture planar SOFC device. Widely studied materials were chosen for this work, particularly YSZ as electrolyte, LSM as cathode and Ni-YSZ cermet for the anode. This technique was firstly used to elaborate the porous electrodes and the collectors constituted by a gold grid. These layers were deposited onto sintered YSZ pellets and two types of fuel cells were produced: conventional two-chambers devices where anode and cathode atmospheres are separate and single-chamber fuel cells (SCFC) where the electrodes are deposited on the same electrolyte side and are in contact with a common surrounding atmosphere. Two test benches were developed to study the cells' performances in separate hydrogen/oxygen atmospheres for conventional device or in a unique methane/oxygen mixture for single-chamber device. At this point of the study, performances are not optimized and weak power density is available, around 1.2 mW/cm(2) for SCFC at 800 degrees C with a ratio of methane to oxygen equal to 1.5. Performances of two-chambers devices are also weak due to the electrolyte thickness around I rum and the low experimental temperature, 500 degrees C. However, the results confirm the feasibility of SCFC and developed test benches constitute a tool for further investigations of modified devices, especially with YSZ electrolyte thick film supported on interconnect materials as no tightness is required for SCFC, or with multi-layered electrodes. (c) 2005 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2633 / 2636
页数:4
相关论文
共 50 条
  • [1] Polymer screen-printing for paper-based device fabrication
    Sameenoi, Yupaporn
    NaNongkai, Piyaporn
    Nouanthavong, Souksanh
    Henry, Charles
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2015, 249
  • [2] A clear look at flat-glass screen-printing technology
    Herman, Peter
    [J]. Screen Printing, 2002, 92 (10): : 44 - 48
  • [3] Screen-printing, Inkjet or both?
    [J]. Glass International, 2021, 44 (09): : 17 - 19
  • [4] Screen-printing troubleshooting glossary
    Frecska, Tamas S.
    [J]. Screen Printing, 2002, 92 (05):
  • [5] A clear look at flat-glass screen-printing technology
    Herman, Peter
    [J]. Screen Printing, 2002, 92 (09):
  • [6] Sensors/biosensors, based on screen-printing technology for biomedical applications
    Hart, JP
    Abass, AK
    Honeychurch, KC
    Pemberton, RM
    Ryan, SL
    Wedge, R
    [J]. INDIAN JOURNAL OF CHEMISTRY SECTION A-INORGANIC BIO-INORGANIC PHYSICAL THEORETICAL & ANALYTICAL CHEMISTRY, 2003, 42 (04): : 709 - 718
  • [7] Screen-Printing Technology for Scale Manufacturing of Perovskite Solar Cells
    Chen, Changshun
    Ran, Chenxin
    Yao, Qing
    Wang, Jinpei
    Guo, Chunyu
    Gu, Lei
    Han, Huchen
    Wang, Xiaobo
    Chao, Lingfeng
    Xia, Yingdong
    Chen, Yonghua
    [J]. ADVANCED SCIENCE, 2023, 10 (28)
  • [8] A Study of the Rheological Properties of NiO/ScSZ Screen-Printing Inks and Their Application to SOFC Anodes
    Somalu, M. R.
    Brandon, N. P.
    Yufit, V.
    [J]. SOLID OXIDE FUEL CELLS 12 (SOFC XII), 2011, 35 (01): : 1483 - 1500
  • [9] Development of tin oxide material by screen-printing technology for micro-machined gas sensors
    Riviere, B
    Viricelle, JP
    Pijolat, C
    [J]. SENSORS AND ACTUATORS B-CHEMICAL, 2003, 93 (1-3) : 531 - 537
  • [10] Synthesis of carbon nanotubes using screen-printing catalyst and its application for a field emission device
    Chiang, Wang-Ta
    Su, Shui-Hsiang
    Wu, Cheng-Yu
    Yokoyama, Meiso
    [J]. PHYSICA STATUS SOLIDI C - CURRENT TOPICS IN SOLID STATE PHYSICS, VOL 7 NO 3-4, 2010, 7 (3-4): : 1231 - 1235