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- W2507508782 abstract "Nano-structured cathodes of La0.65Sr0.3Co0.2Fe0.8O3–δ (LSCF) are fabricated by solution precursor plasma spraying (SPPS) on yttria stabilized zirconia (YSZ) electrolytes (LSCF-SPPS-YSZ). Phase pure LSCF is obtained at all plasma power. Performances of LSCF-SPPS-YSZ cathodes are compared with conventionally prepared LSCF cathodes on YSZ (LSCF-C-YSZ) and gadolinium doped ceria (GDC) (LSCF-C-GDC) electrolytes. High Rp is observed in the LSCF-C-YSZ (∼42 Ohm cm2 at 700 °C) followed by LSCF-C-GDC (Rp ∼ 1.5 Ohm cm2 at 700 °C) cathodes. Performance of the LSCF-SPPS-YSZ cathodes (Rp ∼ 0.1 Ohm cm2 at 700 °C) is found to be even superior to the performance of LSCF-C-GDC cathodes. High performance in LSCF-SPPS-YSZ cathodes is attributed to its nano-structure and absence of any interfacial insulating phase which may be attributed to the low temperature at the interaction point of LSCF and YSZ and low interaction time between LSCF and YSZ during SPPS process. In the time scale of 100 h, no change in the polarization resistances is observed at 750 °C. Based on the literature and from the present studies it can be stated that SOFC with YSZ electrolyte and LSCF-SPPS-YSZ cathode can be operated at 750 °C for a longer duration of time and good performance can probably be achieved." @default.
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- W2507508782 date "2016-08-30" @default.
- W2507508782 modified "2023-09-27" @default.
- W2507508782 title "Microstructure and Polarization Studies on Interlayer Free La<sub>0.65</sub>Sr<sub>0.3</sub>Co<sub>0.2</sub>Fe<sub>0.8</sub>O<sub>3-</sub><i><sub>δ</sub></i>Cathodes Fabricated on Yttria Stabilized Zirconia by Solution Precursor Plasma Spraying" @default.
- W2507508782 cites W1531172971 @default.
- W2507508782 cites W1776514743 @default.
- W2507508782 cites W1835905271 @default.
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- W2507508782 cites W1971772992 @default.
- W2507508782 cites W1973160746 @default.
- W2507508782 cites W1979419749 @default.
- W2507508782 cites W1987125981 @default.
- W2507508782 cites W1990272181 @default.
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- W2507508782 cites W1996898851 @default.
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- W2507508782 cites W2028998021 @default.
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- W2507508782 doi "https://doi.org/10.1002/fuce.201600119" @default.
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