• Title/Summary/Keyword: La9.33$(Si_5V_1)O_{26}$

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Electrical Properties of Vanadium-doped Lanthanium Silicates for SOFCs (SOFC 응용을 위한 Vanadium이 첨가된 란타늄 실리케이트의 전기적 특성)

  • Lee, Dong-Jin;Lee, Sung-Gap;Kim, Min-Ho;Kim, Kyeong-Min
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.28 no.5
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    • pp.295-299
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    • 2015
  • In this paper to improve the ionic conduction properties, lanthanum silicate apatite $La_{9.33}(SiO_4)_6O_2$ ceramic, which substituted by V ions at Si-site, were fabricated by the mixed-oxide method. And we investigated the structural and electrical properties of $La_{9.33}(Si_{6-x}V_x)O_{26}$ specimens with variation of dopants for the application of solid oxide fuel cells. The sintering temperature of $La_{9.33}(Si_{6-x}V_x)O_{26}$ specimens decreased from $1,600^{\circ}C$ to $1,400^{\circ}C$. As results of X-ray diffraction patterns, all $La_{9.33}(Si_{6-x}V_x)O_{26}$ specimens showed the formation of a complete solid solution in a apatite polycrystallin structure. But the specimens doped with more than 1.5mol% showed the second phase, $La_2SiO_5$ and $SiO_2$. The specimen dopants with 1.0 mol% showed the maximum ion conductivity. Ion conducting and activation energy of the $La_{9.33}(Si_5V_1)O_26$ specimens were about $7.8{\times}10^{-4}S/cm$ 1.62 eV at $600^{\circ}C$, respectively.

Characteristics of Lanthanum Silicates Electrolyte for Solid Oxide Fuel Cells

  • Lee, Dong-Jin;Lee, Sung-Gap;Noh, Hyun-Ji;Jo, Ye-Won
    • Transactions on Electrical and Electronic Materials
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    • v.16 no.4
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    • pp.194-197
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    • 2015
  • La9.33(Si5V1)O26 ceramics were fabricated by the mixed oxide method for solid oxide electrolytes. La9.33(Si5V1)O26 specimens showed the hexagonal, space group P63 or P63/m, and the unit cell volume increased when the sintering temperature increased. The specimen sintered at 1,400℃ showed the X-ray patterns of the homogeneous apatite single phase without the second phase, such as La2SiO5 and SiO2. The specimen sintered at 1,400℃ showed the maximum sintered density of 4.93 g/cm3. When the sintering temperature increased, the electrical conductivities increased, the activation energy decreased and the values were 7.83×10−4 S/cm, 1.61 eV at 600℃, respectively.