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Preparation and Characterization of Different Metal Modified BaTiO3 Powders

机译:不同金属改性BATIO3粉末的制备与表征

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BaTiO3 powders modified with Sm,La,Cu,Al,Zn were prepared by solid doping and gaseous penetration method and their components,structure,superficies and electric properties were characterized.The results show that the resistivity of the modified powders is decreased after both solid doping and gaseous penetration,and it is more obviously after gaseous penetration.Among all the metals being discussed,Sm has the most significant influence on decreasing the resistivity of modified powders.The room temperature resistivity of Sm-penetrated BaTiO3 powders is the lowest,which decreases from 8.3 × 1010Ω·m (pure BaTiO3 powders) to 1.65 × 105Ω·m.SEM investigation illustrates that the powders are in uniform grain size.No apparent pores and small grains are found.XRD analysis indicates that the doping process only leads to the changes of the peak width and intensity without new phases appearing,but characteristic peaks of Sm2TiO5,SmTiO3,and Ba10.37Sm17.08Ti36O108 can be detected after gaseous penetrated,which leads to the decrease of the resistivity of modified BaTiO3 powders.
机译:用SM,La,Cu,Al,Zn改性的BatiO3粉末通过固体掺杂和气态渗透法制备,其组分,结构,超细和电性能。结果表明,固体后改性粉末的电阻率降低掺杂和气态穿透,并且在气态渗透后更明显。讨论所有金属,SM对降低改性粉末的电阻率最显着的影响。SM穿透BATIO3粉末的室温电阻率是最低的,这是最低的从8.3×1010Ω·m(纯Batio3粉末)降低至1.65×105Ω·m.sem调查说明粉末是均匀的晶粒尺寸。发现表观孔隙和小晶粒。XRD分析表明掺杂过程仅导致掺杂过程没有新阶段出现的峰宽和强度的变化,但在气态柱后可以检测SM2TIO5,SMTIO3和BA10.37SM17.08TI36O108的特征峰额定,导致改性BATIO3粉末电阻率降低。

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