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Directionally solidified CeO2 (or GDC)/CoO eutectic ceramics as cermet precursors for SOFCs anodes: Microstructure cross-over

机译:定向凝固的CeO2(或GDC)/ CoO共晶陶瓷作为SOFC阳极的金属陶瓷前体:微结构交叉

摘要

Rods of CeO2 and gadolinium-doped CeO2 (GDC)–CoO eutectics were prepared by directional solidification using a laser heated floating zone (LFZ) technique. The microstructure has been studied as a function of the growth rate from V = 10 to 750 mm/h. Regular eutectic microstructures are obtained except for the highest growth rate. The interspacing follows the λ2V =ClawwithC= 4.1(3)×10−17 and 2.6(3)×10−17 m3/s for CeO2–CoO and GDC–CoO eutectics, respectively. A cross-over between fibrous and lamellar eutectic microstructures was observed depending on the growth rate. The crystallography of the eutectics was studied by Electron Backscatter Diffraction (EBSD). The growth directions [1 1 0] GDC -- //[110] Co02, and the interfacial planes (200)GDC//(111)CoO, were identified. Solubility of Co in the ceria matrix was determined by Energy Dispersive X-ray (EDX) Spectroscopy after Co was leached out from the matrix. Co solubility in ceria at 1650 ◦C was found to be less than 1 mol%.
机译:通过使用激光加热的浮动区(LFZ)技术进行定向凝固,制备了CeO2棒和掺g的CeO2(GDC)-CoO共晶棒。已经研究了微结构作为从V = 10到750 mm / h的生长速率的函数。除了最高的生长速率,可获得规则的共晶微观结构。对于CeO2–CoO和GDC–CoO共晶,其间距分别为λ2V= ClawwithC = 4.1(3)×10-17和2.6(3)×10-17 m3 / s。取决于生长速率,观察到纤维状和层状共晶微结构之间的交叉。通过电子背散射衍射(EBSD)研究了共晶的晶体学。确定了生长方向[1 1 0] GDC-// [110] Co02,以及界面平面(200)GDC //(111)CoO。从基质中浸出钴后,通过能量色散X射线(EDX)光谱法确定钴在二氧化铈基质中的溶解度。发现在1650℃下二氧化铈中的Co溶解度小于1 mol%。

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