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Synthesis of Nickel Coated Gadolinia doped Ceria Nanopowder by Microwave Radiation

机译:微波辐射合成镍包覆Ga掺杂二氧化铈纳米粉

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Nickel coated gadolinium doped ceria (GDC) powder was synthesized by microwave radiation and combustion. For the synthesis, the precipitates of gadolinium cerium oxycarbonate hydrate (Gd_xCe_(2-x)O(CO_3)_2·H_2O) were formed by a microwave radiated reaction between cerium nitrate (Ce(NO_3)_3.6H_2O) and gadolinium nitrate (Gd(NO_3)_3.6H_2O) and urea (CO(NH_2)_2), then nickel coatings on the gadolinium cerium oxycarbonate hydrate were performed by further microwave reaction between nickel chloride and urea. The shape and size of the gadolinium cerium oxycarbonate hydrate particles were critically dependent on aging time during microwave radiation. The irregular particles were transformed to rod shape particles with well-crystallized with increasing aging time to 40 min at 70 - 80°C because of the gradual decomposition of urea during microwave radiation. Small nickel precursor particles were homogeneously coated on the gadolinium cerium oxycarbonate hydrate particles with rod shape with aid of microwave radiation at 80 °C for 40 min. As a result, the nickel coated GDC nanopowders were sucessfully produced by the microwave radiation synthesis and further microwave combusted at 450°C for 20 min.
机译:通过微波辐射和燃烧合成了镍包覆的do掺杂二氧化铈(GDC)粉末。对于合成,通过硝酸铈(Ce(NO_3)_3.6H_2O)和硝酸g(Gd)之间的微波辐射反应形成了碳酸氧铈铈水合物(Gd_xCe_(2-x)O(CO_3)_2·H_2O)的沉淀物。 (NO_3)_3.6H_2O)和尿素(CO(NH_2)_2),然后通过氯化镍与尿素之间的进一步微波反应,在碳酸g氧化铈铈水合物上进行镍涂层。碳酸氧铈铈水合物颗粒的形状和尺寸主要取决于微波辐射过程中的老化时间。由于在微波辐射过程中尿素逐渐分解,随着时间的增加,在70-80°C下,不规则颗粒转变为棒状颗粒,并随着时间的延长将其充分结晶至40分钟。在80°C的微波辐射下,将细小的镍前驱体颗粒均匀地涂在棒状碳酸氧铈铈水合物颗粒上40分钟。结果,通过微波辐射合成成功地制备了镍涂覆的GDC纳米粉末,并且进一步在450℃下微波燃烧了20分钟。

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