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Constitution of the Sr-Ni-O system

机译:Sr-Ni-O系统的组成

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The constitution of the Sr-Ni-O system was studied experimentally for the first time. Samples were prepared either from SrCO3 and NiO or from Sr(NO3)(2) and Ni(NO3)(2).6H(2)O and characterized by high-temperature X-ray powder diffraction, scanning electron microscopy, thermogravimetric and differential thermal analyses. In the SrO-NiO quasibinary system an eutectic reaction: liquid reversible arrow SrO+NiO was found to occur at 1396 +/- 5 degrees C, while the homogeneity range of terminal solid solutions is negligible. Thermodynamic calculations using the regular solution model for the liquid and rocksalt-type phases were employed to predict liquidus and solidus curves. Three ternary compounds, SrNiO2.5, Sr5Ni7O21 and Sr9Ni7O21 were observed in the samples prepared from nitrate solutions, but only Sr9Ni7O21 Was proved to be thermodynamically stable in air up to 1030 +/- 6 degreesC. When heating in air, SrNiO2.5 and Sr5Ni4O11 were found to transform irreversibly into a mixture of Sr9Ni7O21 and NiO. Isothermal section of the SrO-NiO-O subsystem, which represents phase equilibria at 950-1030 degrees C as well as an isobaric section of the Sr-Ni-O system in air were constructed. (c) 2005 Elsevier Inc. All rights reserved.
机译:首次对Sr-Ni-O体系的组成进行了实验研究。由SrCO3和NiO或Sr(NO3)(2)和Ni(NO3)(2).6H(2)O制备样品,并通过高温X射线粉末衍射,扫描电子显微镜,热重和差示法进行表征热分析。在SrO-NiO准二元体系中,共晶反应:发现液体可逆箭头SrO + NiO在1396 +/- 5摄氏度时发生,而末端固溶体的均匀性范围可忽略不计。使用常规溶液模型对液相和岩盐型相进行热力学计算,以预测液相线和固相线曲线。在由硝酸盐溶液制备的样品中观察到三种三元化合物SrNiO2.5,Sr5Ni7O21和Sr9Ni7O21,但只有Sr9Ni7O21被证明在高达1030 +/- 6℃的空气中具有热力学稳定性。在空气中加热时,发现SrNiO2.5和Sr5Ni4O11不可逆地转变为Sr9Ni7O21和NiO的混合物。构造了SrO-NiO-O子系统的等温截面(表示950-1030摄氏度时的相平衡),以及Sr-Ni-O系统在空气中的等压截面。 (c)2005 Elsevier Inc.保留所有权利。

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