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Synthesis of Ceria Zirconia Oxides using Solvothermal Treatment

机译:溶剂热处理法合成二氧化铈氧化锆

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Ceria oxide (CeO_(2)) is widely used as catalyst with high oxygen storage capacity at low temperature. The addition of zirconia oxide (ZrO_(2)) to CeO_(2)can enhance oxygen storage capacity as well as thermal stability. In this work, ceria zirconia oxides has been synthesized via a low temperature solvothermal treatment in order to produce ceria zirconia oxides composite with high oxygen storage capacity as electrolyte of solid oxide fuel cells (SOFC). Under solvothermal conditions, solvent may control the direction of crystal growth, morphology, particle size and size distribution, because of the controllability of thermodynamics and transport properties by pressure and temperature. Water, mixed of water and ethanol (70/30 vol/vol), and mixed of water and ethylene glycol (70/30 vol/vol) were used as solvent, while Ce(NO_(3))_(3)and ZrO(NO_(3))_(2)with 0.06 M concentration were used as precursor. The experiments were conducted at temperature of 150 °C and pressure for 2 h in a Teflon-lined autoclave of 100 mL volume. The synthesized products were dried at 60 °C for 6 and 12 h and then calcined at 900 °C for 6 h. The particle products were characterized using SEM, XRD, TG/DTA, and Potentiostat. The results showed that the morphology of particles formed were affected by the solvent. Solid plate shaped particles were produced in water, and tend to be pore with the addition of ethylene glycol. The addition of ethanol decreased the size of particles with sphere shaped. The XRD pattern indicated that ceria-zirconia oxides particles are uniformly distributed in the structure to form a homogeneous solid solution. Based on the electrochemical analysis, ceria zirconia oxides produced via solvothermal synthesis had high conductivity ion of 0.5594 S/cm, which is higher than minimum conductivity ion requirement of 0.01 S/cm for SOFC electrolyte. It indicated that ceria zirconia oxides produced via solvothermal synthesis is suitable for SOFC electrolyte.
机译:氧化铈(CeO_(2))被广泛用作低温下具有高储氧能力的催化剂。在CeO_(2)中添加氧化锆(ZrO_(2))可以增强储氧能力和热稳定性。在这项工作中,已经通过低温溶剂热处理合成了氧化铈氧化锆,以便生产具有高储氧能力的氧化铈氧化锆复合材料作为固体氧化物燃料电池(SOFC)的电解质。在溶剂热条件下,溶剂可以控制晶体生长的方向,形态,粒度和粒度分布,这是因为热力学的可控性和压力和温度对传输性质的控制。水,水和乙醇的混合物(70/30体积/体积)以及水和乙二醇的混合物(70/30体积/体积)用作溶剂,而Ce(NO_(3))_(3)和ZrO使用浓度为0.06 M的(NO_(3))_(2)作为前体。在温度为150°C,压力为100 mL的特氟龙衬里高压釜中进行2 h实验。合成产物在60°C下干燥6和12 h,然后在900°C下煅烧6 h。使用SEM,XRD,TG / DTA和恒电位仪对颗粒产物进行表征。结果表明,所形成的颗粒的形态受到溶剂的影响。固体板状颗粒在水中产生,并且在添加乙二醇的情况下趋于成为孔。乙醇的添加减小了球形颗粒的尺寸。 XRD图谱表明氧化铈-氧化锆氧化物颗粒均匀地分布在结构中以形成均匀的固溶体。基于电化学分析,通过溶剂热合成法制备的氧化铈氧化锆具有0.5594 S / cm的高电导率离子,高于SOFC电解质的最小电导率离子要求0.01 S / cm。表明通过溶剂热合成制备的氧化铈氧化锆适合用于SOFC电解质。

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