Electrophoretic deposition and low-temperature densification of Cu1.35Mn1.65O4 spinel for an interconnect protective coating in solid oxide fuel cells

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24
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SCOPUS

26

초록

As a protective coating of the interconnects in solid oxide fuel cells, spinel-structured Cu1.35Mn1.65O4 powder was coated onto 460FC stainless steel by using the electrophoretic deposition method. A suitable amount of iodine was added to ethanol to charge the spinel powder with a high zeta potential value. Stainless steel substrates were immersed in a slurry, and a DC voltage in the range of 20-60 V was applied for 30-120 s. Because a low-temperature densification of the coated film is crucial for minimizing Cr out-diffusion from the stainless steel substrate, the coated spinel was decomposed into Cu and MnO by applying a heat treatment at 800 degrees C in a 5% H-2/95% N-2 atmosphere. Then, it was oxidized at 700 degrees C in air, leading to appropriate densification. The area-specific resistance of the films was 15-29 m Omega cm(2) after 1000 h at 700 degrees C in air. (C) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.

키워드

Solid oxide fuel cells; Electrophoretic deposition; Spinel; Low-temperature densification; Decomposition; FERRITIC STAINLESS-STEELS; METALLIC INTERCONNECTS; OXIDATION BEHAVIOR; CO; ALLOYS; LAYERS; PERFORMANCE
제목
Electrophoretic deposition and low-temperature densification of Cu1.35Mn1.65O4 spinel for an interconnect protective coating in solid oxide fuel cells
저자
Oh, Seong-Uk; Kim, Dokyum; Lee, In-Taek; Choi, Chan-Sik; Lee, Jung-A; Heo, Young-Woo; Lee, Joon-Hyung
DOI
10.1016/j.ijhydene.2022.07.259
발행일
2022-09-12
유형
Article
저널명
International Journal of Hydrogen Energy
권
47
호
78
페이지
33410 ~ 33419