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首页> 外文期刊>International journal of hydrogen energy >Synthesis and characterization of nanocrystalline ScSZ electrolyte for SOFCs
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Synthesis and characterization of nanocrystalline ScSZ electrolyte for SOFCs

机译:SOFCs纳米晶ScSZ电解质的合成与表征

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摘要

Sc_2O_3 stabilized zirconia (ScSZ) was processed by combustion synthesis. X-ray diffraction was carried for analyzing the phase and crystallinity of the processed powder. The results indicate the effectiveness of the combustion synthesis process to produce nanocrystalline ScSZ from the precursor salts without any intermediate calcination step. Comparison with the X-ray diffraction pattern of a commercial 8YSZ sample showed that the process is also effective in producing the desired cubic fluorite phase. The powder was compacted and sintered to produce a dense electrolyte pellet. The sintering temperature was found to be considerably lower compared to conventional microcrystalline zirconia ceramics. The electrical conductivity of the ScSZ electrolyte was found to be higher compared to 8YSZ processed under same conditions. The Arrhenius plot of conductivity yielded two activation energies corresponding to low and high temperature regions. The activation energy of the IOScSz electrolyte was found to be considerably lower than the 8YSZ sample.
机译:通过燃烧合成处理了Sc_2O_3稳定的氧化锆(ScSZ)。进行X射线衍射以分析处理的粉末的相和结晶度。结果表明燃烧合成方法从前体盐生产纳米晶ScSZ的有效性,而无需任何中间煅烧步骤。与商业化的8YSZ样品的X射线衍射图比较表明,该方法在生产所需的立方萤石相中也很有效。将粉末压实并烧结以产生致密的电解质颗粒。与常规的微晶氧化锆陶瓷相比,发现烧结温度要低得多。发现与在相同条件下处理的8YSZ相比,ScSZ电解质的电导率更高。电导率的阿伦尼乌斯曲线产生了对应于低温和高温区域的两种活化能。发现IOScSz电解质的活化能明显低于8YSZ样品。

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