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Effect of Li and Bi co-doping and sintering temperature on dielectric properties of PLZT 9/65/35 ceramics

机译:Li和Bi掺杂和烧结温度对PLZT 9/65/35陶瓷介电性能的影响

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摘要

In the present study, lead-lanthanum-zirconate-titanate (PLZT) ceramics were prepared by a solid-state mixed oxide method. Different amount of lithium carbonate and bismuth oxide (0.15 mol%, 0.45 mol% and 0.75 mol %), where the ratio of Li:Bi =1:1 by mole, was added to PLZT to investigate the effect of Li and Bi co-doping. The ceramic samples were sintered at the temperatures of 1000, 1050, 1100, 1150 and 1200 degrees C for 4 h. After that, all samples were subjected to phase identification, physical property determination (sintered density and microstructure) and dielectric property measurement. It was found that doping of 0.15 mol% Li and Bi resulted in maximum dielectric constant (epsilon(r) =7819) when sintered at 1200 degrees C. Grain size of PLZT ceramics was dependent on sintering temperature and dielectric properties were affected by the chemical composition rather than the grain size of the ceramics. Therefore, co-doping of Li and Bi was useful as it could improve the dielectric properties of PLZT ceramics.
机译:在本研究中,通过固态混合氧化物方法制备铅 - 镧 - 锆酯 - 钛酸酯(PLZT)陶瓷。将不同量的碳酸锂和氧化铋(0.15mol%,0.45mol%和0.75mol%),其中Li:Bi = 1:1的比例加入到PLZT中以研究Li和Bi Co-的作用兴奋剂。陶瓷样品在1000,1050,1100,1150和1200℃的温度下烧结4小时。之后,对所有样品进行相相鉴定,物理性质测定(烧结密度和微观结构)和介电性能测量。发现掺杂0.15mol%Li和Bi导致最大介电常数(ε(R)= 7819),当在1200℃下烧结时烧结。PLZT陶瓷的晶粒尺寸取决于烧结温度,介电性质受到化学物质的影响构成而不是陶瓷的晶粒尺寸。因此,Li和Bi的共掺杂是有用的,因为它可以改善PLZT陶瓷的介电性能。

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