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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of Zr/Ti ratio on microstructure and electrical properties of pyroelectric ceramics for energy harvesting applications
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Effect of Zr/Ti ratio on microstructure and electrical properties of pyroelectric ceramics for energy harvesting applications

机译:Zr / Ti比对热电陶瓷微结构和电性能的影响,用于能量收集应用

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In this paper, Pb[(MnxNb1-x)(1/2)(Mn(x)sb(1-x))(1/2)](y)(ZrzTi1-z)(1-y)O-3 (lead magnesium niobate-lead antimony manganese-lead zirconate titanate: PMnN-PMS-PZT) ceramics with three different Zi/Ti compositions of 95/5 (Zr95), 85/15 (Zr85) and (Zr85 + Zr95) were successfully fabricated and characterized. The effect of Zr/Ti ratio on the microstructure and electric properties were studied in detail. The pyroelectric coefficient of Zr95 ceramic was 5957 mu C/m(2)K which was more than 2-3 times higher than other reported pyroelectric ceramics. The effect on pyroelectric energy harvesting was systemically investigated via a variation of Zr/Ti compositions in the ceramics, which was directly evaluated by the output power acquired from the data acquisition system. The output power was 25.7 mu W, 4.8 mu W and 14.2 mu W at a composition ratio of Zr95, Zr85 and Zr85 + Zr95, respectively under identical conditions. Among the three Zi/Ti compositions, the best pyroelectric and ferroelectric properties were achieved with Zr95, which indicated that the pyroelectric energy harvesting can be efficiently optimized by the appropriate control of phase structure. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文,Pb [(MnxNB1-X)(1/2)(Mn(x)Sb(1-x))(1/2)](Y)(ZrzTi1-Z)(1-Y)O-3 (铅镁铌醛铅锑锰 - 铅锆钛酸盐:PMNN-PMS-PZT)陶瓷,具有95/5(ZR95),85/15(ZR85)和(Zr85 + Zr95)的三种不同的Zi / Ti组合物,和(Zr85 + Zr95)并表征。详细研究了Zr / Ti比对微观结构和电性能的影响。 Zr95陶瓷的热电系数为5957μc/ m(2)k,其比其他报告的热电陶瓷高2-3倍。通过陶瓷中的Zr / Ti组合物的变化来系统性地研究了对热电能量收集的影响,该陶瓷中的Zr / Ti组合物的变化通过从数据采集系统获取的输出功率直接评估。输出功率分别在相同条件下以Zr95,Zr85和Zr85 + Zr95的组成比为25.7μW,4.8μW和14.2μW。在三种Zi / Ti组合物中,用Zr95实现了最佳的热电和铁电性能,这表明可以通过适当控制相结构进行有效地优化热电能量收集。 (c)2017年Elsevier B.V.保留所有权利。

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