Novel co-precipitation derived nanostructured LSM-YSZ cathode for intermediate temperature solid oxide fuel cells

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Abstract

Strontium doped lanthanum manganite ((La0.85Sr 0.15)0.98MnO3; LSM)/yttria-stabilized zirconia (YSZ) nanocomposite particles were synthesized through a novel co-precipitation method using YSZ nanoparticles with the average size of 3 nm as seed crystals. Phase evolution studies indicated that crystalline LSM/YSZ phases were obtained by calcining the co-precipitated precursor above 700°C. The nanocomposite particles calcined at 1000°C were screen printed on YSZ dense electrolytes and then sintered at 1100deg;C for cathode fabrication. The resulting cathode had a uniform porous structure consisting of fine grains ∼100 nm in size, and exhibited low polarization resistance of 2.82, 1.18, 0.48 and 0.25 Ω-cm2 at 650,700,750 and 800°C, respectively under air atmosphere. These results indicated that the present nanostructured cathode may be applicable for intermediate temperature solid oxide fuel cells. ©2009 The Ceramic Society of Japan. All rights reserved.

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Sato, K., Kinoshita, T., Hiroya, A. B. E., & Naito, M. (2009). Novel co-precipitation derived nanostructured LSM-YSZ cathode for intermediate temperature solid oxide fuel cells. Journal of the Ceramic Society of Japan, 117(1371), 1186–1190. https://doi.org/10.2109/jcersj2.117.1186

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