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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Development of Stabilized NiO Cathodes for Molten Carbonate Fuel Cell
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Development of Stabilized NiO Cathodes for Molten Carbonate Fuel Cell

机译:用于熔融碳酸盐燃料电池的稳定NiO阴极的开发

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The stabilized NiO cathodes were fabricated by Li-Co-O coated Ni powder which was synthesized by hydrothermal treatment in 4–6 M LiOH·H2O. The morphology of Li-Co-O coating was characterized by spectroscopic techniques to investigate the optimal synthesis conditions such as temperature, reaction time, and reactant molarity. Li-Co-O coating was consisted of LiCoO2, Co(OH)2, and CoOOH, and the amount of LiCoO2 was increased with increasing time and molarity of LiOH·H2O. The mechanical properties of the stabilized NiO cathodes were also measured to evaluate the stability in molten carbonate fuel cell (MCFC) applications. The bending strength of the stabilized cathode was significantly improved compared to the typical NiO cathode. The pores of the stabilized cathode showed typical bimodal distribution in size due to the micropores developed by coated materials, and the overall porosity was higher than 75% under optimal synthesis conditions, which is also promising for MCFC applications
机译:稳定的NiO阴极是由Li-Co-O涂覆的Ni粉制成的,该粉是在4-6 M LiOH·H2O中通过水热处理合成的。用光谱技术表征了Li-Co-O涂层的形貌,以研究最佳的合成条件,如温度,反应时间和反应物摩尔浓度。 Li-Co-O涂层由LiCoO2,Co(OH)2和CoOOH组成,随着LiOH·H2O时间和摩尔浓度的增加,LiCoO2的含量增加。还测量了稳定的NiO阴极的机械性能,以评估在熔融碳酸盐燃料电池(MCFC)应用中的稳定性。与典型的NiO阴极相比,稳定阴极的弯曲强度得到了显着提高。稳定阴极的孔由于涂层材料产生的微孔而显示出典型的双峰尺寸分布,并且在最佳合成条件下,总孔隙率高于75%,这对于MCFC应用也是有希望的

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