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Synthesis of reactive ceramic powders by the citrate technique

机译:用柠檬酸盐技术合成反应性陶瓷粉末

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The citrate technique has been used to produce homogeneous, fine and reactive ceramic powders. That technique consists basically in preparing polymeric resins by adding citric acid and polyethylene glycol to liquid solutions of the inorganicceramic precursors, followed by controlled stirring and heating. High density bodies are then obtained after conformation and sintering the powders that resulted from the calcination of the resins. ZrO{sub}2:MgO, ZrO{sub}2:La{sub}2O{sub}3 andThO{sub}2:Y{sub}2O{sub}3 solid electrolytes to be used as electrochemical transducers in oxygen sensors, and Ag-YBa{sub}2Cu{sub}3O{sub}(7-x) composite high-T{sub}c superconductors were obtained by that technique. The powders have been analyzed bysedimentation and gas adsorption techniques for determining particle size distribution, X-ray diffractometry for structural phase content, and Scanning and Transmission Electron Microscopy (SEM and TEM) for observation of particle agglomeration. Thesintered solid electrolyte ceramic pellets, have been analyzed by XRD, by SEM for grain morphology, and Impedance Spectroscopy for bulk and grain boundary electrical characterization; the composite superconductor have been characterized by opticalmicroscopy, XRD and four-probe electrical resistivity measurements.
机译:柠檬酸技术已被用于产生均匀的,精细和反应性的陶瓷粉末。该技术在通过加入柠檬酸和聚乙二醇至inorganicceramic前体的液体溶液制备聚合物树脂基本上由,随后控制的搅拌和加热。然后在高密度体构象和烧结起因于树脂的煅烧粉末之后获得。的ZrO {子} 2:氧化镁,的ZrO {子} 2:拉{子} 2O {子} 3 andThO {子} 2:Y {子} 2O {子} 3和的固体电解质被用作在氧传感器的电化学传感器,并通过该技术获得的Ag-的YBa {子} 2CU {子} {30}子(7-x)的复合高-T {子}超导体。粉末已经被分析和bysedimentation气体吸附技术用于确定用于结构相含量的粒度分布,X射线衍射法,以及扫描和透射电子显微镜(SEM和TEM)对颗粒聚集的观察。 Thesintered固体电解质的陶瓷小球,已通过X射线衍射分析,通过SEM对晶粒形貌,和阻抗谱散装和晶界的电特性;复合超导体的特点是opticalmicroscopy,XRD和四探针电阻率测量。

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