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CHARGE COMPENSATION IN GD-DOPED CATIO3

机译:GD掺杂的CATIO3中的电荷补偿

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Ca-(1-x)Gd-(x)TiO3 samples prepared by sintering in air at 1550 degrees C exhibit a primary perovskite-structured solid solution for x up to about 0.2. It is concluded from quantitative X-ray microanalysis using a scanning electron microscope that charge compensation in these solid solutions takes place via the formation of one formula unit of Ti3+ per formula unit of Gd. High-resolution transmission electron microscopy showed that the x = 0.15 sample consisted of a pure perovskite structure, with no observable stacking faults and only a few dislocations. Microanalysis showed that Gd3+ substituted for Ca2+ can be charge compensated by Al3+ substituted for Ti4+, as expected. Microanalysis also indicated that charge compensation can take place in air-fired Ca-(1-3x/2)Gd-(x)TiO3 by x/2 formula units of Ca vacancies per formula unit of Gd for compositions in which x < 0.3. (C) 1996 Academic Press, Inc. [References: 12]
机译:通过在1550摄氏度的空气中烧结制备的Ca-(1-x)Gd-(x)TiO3样品显示出x的钙钛矿结构固溶体,固溶度高达0.2。由使用扫描电子显微镜的定量X射线显微分析得出的结论是,这些固溶体中的电荷补偿是通过每Gd的一个配方单元形成一个Ti3 +的配方单元进行的。高分辨率透射电子显微镜显示,x = 0.15的样品由纯钙钛矿结构组成,没有可观察到的堆垛层错,仅有少量位错。微观分析表明,如预期的那样,取代Ca2 +的Gd3 +可通过取代Ti4 +的Al3 +进行电荷补偿。微量分析还表明,对于x <0.3的组合物,在空气燃烧的Ca-(1-3x / 2)Gd-(x)TiO3中,可以通过x / 2单位的Ca空位/ Gd的每单位化学计量单位进行电荷补偿。 (C)1996 Academic Press,Inc. [参考:12]

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