Synthesis and Characterization of the Co-electrolessly Deposited Metallic Interconnect for Solid Oxide Fuel Cell

被引:0
|
作者
Han, Won-Kyu [1 ]
Ju, Jeong-Woon [1 ]
Hwang, Gil-Ho [1 ]
Seo, Hyun-Seok [1 ]
Shin, Jung-Chul [2 ]
Jun, Jae-Ho [3 ]
Kang, Sung-Goon [1 ]
机构
[1] Hanyang Univ, Div Mat Sci & Engn, Seoul, South Korea
[2] Hanyang Univ, Res Inst Steel Proc & Applicat, Seoul, South Korea
[3] Res Inst Ind Sci & Technol RIST, Pohang, South Korea
来源
KOREAN JOURNAL OF MATERIALS RESEARCH | 2010年 / 20卷 / 07期
关键词
solid oxide fuel cell (SOFC); metallic interconnect; electroless deposition (ELD); area specific resistance (ASR);
D O I
10.3740/MRSK.2010.20.7.356
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
For this paper, we investigated the area specific resistance (ASR) of commercially available ferritic stainless steels with different chemical compositions for use as solid oxide fuel cells (SOFC) interconnect. After 430h of oxidation, the STS446M alloy demonstrated excellent oxidation resistance and low ASR, of approximately 40 m Omega cm(2), of the thermally grown oxide scale, compared to those of other stainless steels. The reason for the low ASR is that the contact resistance between the Pt paste and the oxide scale is reduced due to the plate-like shape of the Cr2O3(s). However, the acceptable ASR level is considered to be below 100 m Omega cm(2) after 40,000 h of use. To further improve the electrical conductivity of the thermally grown oxide on stainless steels, the Co layer was deposited on the stainless steel by means of an electroless deposition method; it was then thermally oxidized to obtain the Co3O4 layer, which is a highly conductive layer. With the increase of the Co coating thickness, the ASR value decreased. For Co deposited STS444 with 2 mu m thickness, the measured ASR at 800 degrees C after 300 h oxidation is around 10 mOcm 2, which is lower than that of the STS446M, which alloy has a lower ASR value than that of the non-coated STS. The reason for this improved high temperature conductivity seems to be that the Mn is efficiently diffused into the coating layer, which diffusion formed the highly conductive (Mn,Co)(3)O-4 spinel phases and the thickness of the Cr2O3(S), which is the rate controlling layer of the electrical conductivity in the SOFC environment and is very thin.
引用
收藏
页码:356 / 363
页数:8
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