Fabrication of NiO-Y:BaZrO3 composite anode for thin film-protonic ceramic fuel cells using tape-casting

Authors
Bae, K.Noh, H.-S.Jang, D.Y.Kim, M.Kim, H.J.Hong, J.Lee, J.-H.Kim, B.-K.Son, J.-W.Shim, J.H.
Issue Date
2015-09
Publisher
Korean Ceramic Society
Citation
Journal of the Korean Ceramic Society, v.52, no.5, pp.320 - 324
Abstract
Optimization of the fabrication process of NiO-yttrium doped barium zirconate (BZY) composite anode substrates using tapecasting for high performance thin-film protonic ceramic fuel cells (PCFCs) is investigated. The anode substrate is composed of a tens of microns-thick anode functional layer laminated over a porous anode substrate. The macro-pore structure of the anode support is induced by micron-scale polymethyl methacrylate (PMMA) pore formers. Thermal gravity analysis (TGA) and a dilatometer are used to determine the polymeric additive burn-out and sintering temperatures. Crystallinity and microstructure of the tape-cast NiO-BZY anode are analyzed after the sintering.
Keywords
Anodes; Barium zirconate; Ceramic materials; Electrodes; Fuel cells; Gas fuel purification; Polymethyl methacrylates; Pore structure; Sintering; Substrates; Thin films; Anode functional layer; Composite anodes; NiO-BZY; Polymeric additives; Porous anode substrate; Sintering temperatures; Tape casting; Thermal gravity analysis; Protonic ceramic fuel cells (PCFC); Anodes; Barium zirconate; Ceramic materials; Electrodes; Fuel cells; Gas fuel purification; Polymethyl methacrylates; Pore structure; Sintering; Substrates; Thin films; Anode functional layer; Composite anodes; NiO-BZY; Polymeric additives; Porous anode substrate; Sintering temperatures; Tape casting; Thermal gravity analysis; Protonic ceramic fuel cells (PCFC); Composite anode supports; NiO-BZY; Protonic ceramic fuel cells; Tape-casting
ISSN
1229-7801
URI
https://pubs.kist.re.kr/handle/201004/125103
DOI
10.4191/kcers.2015.52.5.320
Appears in Collections:
KIST Article > 2015
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