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Effect of synthetic route on sintering behaviour, phase purity and conductivity of Sr- and Mg-doped LaGaO3 perovskites

机译:合成路线对掺Sr和Mg的LaGaO3钙钛矿烧结行为,相纯度和电导率的影响

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摘要

La1-xSrxGa1-yMgyO3-d (LSGM) powders containing different amounts of Sr2+ and Mg2+ were prepared from precursorsudsynthesised by either Pechini or citrate sol-gel method and by subsequent calcination at 1400 °C. Some powders were also submittedudto further 10 h firing at 1500 °C. All as-calcined powders contained small amounts of Sr- and Ga-containing phases (namelyudSrLaGa3O7 and SrLaGaO4), as detected by X-Ray Diffraction (XRD). The relative amounts of these phases depended on x and y,udi.e. the dopants’ levels. Nevertheless, powders prepared by the citrate method exhibited systematically higher phase purity than those obtained by the Pechini process. Calcined powders were then sintered at 1500 °C (10 h) in air and the degree of sintering was assessed by scanning electron microscopy (SEM). Phase composition of sintered pellets was different from that of powders. In fact,udsintered pellets showed the presence of MgO, as detected by SEM, and of lesser amounts of SrLaGa3O7. Both these phases were lessudabundant in materials sintered using powders prepared by citrate method, thus suggesting that Pechini method does not representudthe best wet chemical process for manufacturing. The conductivity of sintered pellets was measured by impedance spectroscopy in the 600–800 °C interval. Conductivity values of LSGM materials were affected by secondary phase segregation and, therefore, depended on both composition and sol-gel method synthetic route.
机译:由Pechini或柠檬酸盐溶胶-凝胶法合成的前体制备La1-xSrxGa1-yMgyO3-d(LSGM)粉末,其中Sr2 +和Mg2 +的含量不同,随后在1400°C下煅烧。也将一些粉末送至1500℃下进一步烧成10h。通过X射线衍射(XRD)检测,所有煅烧粉末均含有少量的Sr和Ga相(即 udSrLaGa3O7和SrLaGaO4)。这些相的相对量取决于x和y。掺杂物的水平。然而,通过柠檬酸盐方法制备的粉末显示出比通过Pechini方法获得的粉末系统地更高的相纯度。然后将煅烧的粉末在空气中于1500°C(10 h)烧结,并通过扫描电子显微镜(SEM)评估烧结程度。烧结颗粒的相组成与粉末的相组成不同。事实上,经SEM观察,未烧结的颗粒显示出MgO的存在,而SrLaGa3O7的含量较少。在使用柠檬酸盐法制备的粉末进行烧结的材料中,这两个相的数量都较少不丰富,因此表明Pechini方法并不能代表最佳的湿法化学生产工艺。烧结球团的电导率是通过阻抗谱在600–800°C的区间内测量的。 LSGM材料的电导率值受次级相偏析的影响,因此,取决于组成和溶胶-凝胶法的合成途径。

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  • 作者

    Polini R; Pamio A; Traversa E;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 eng
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