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无铅亚微米结构(Bi0.5Na0.5)1-xBaxTiO3铁电陶瓷在微波频率下的介电常数可调性及热释电行为

Dielectric constant tunability at microwave frequencies and pyroelectric behavior of lead-free submicrometer-structured (Bi0.5Na0.5)1-xBaxTiO3 ferroelectric ceramics.

作者信息

Martínez Félix L, Hinojosa Juan, Doménech Ginés, Fernández-Luque Francisco J, Zapata Juan, Ruiz Ramon, Pardo Lorena

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Aug;60(8):1595-602. doi: 10.1109/TUFFC.2013.2740.

Abstract

In this article, we show that the dielectric constant of lead-free ferroelectric ceramics based on the solid solution (1-x)(Bi(0.5)Na(0.5))TiO(3)-xBaTiO(3), with compositions at or near the morphotropic phase boundary (MPB), can be tuned by a local applied electric field. Two compositions have been studied, one at the MPB, with x = 0.06 (BNBT6), and another one nearer the BNT side of the phase diagram, with x = 0.04 (BNBT4). The tunability of the dielectric constant is measured at microwave frequencies between 100 MHz and 3 GHz by a nonresonant method and simultaneously applying a dc electric field. As expected, the tunability is higher for the composition at the MPB (BNBT6), reaching a maximum value of 60% for an electric field of 900 V/cm, compared with the composition below this boundary (BNBT4), which saturates at 40% for an electric field of 640 V/cm. The high tunability in both cases is attributed to the fine grain and high density of the samples, which have a submicrometer homogeneous grain structure with grain size of the order of a few hundred nanometers. Such properties make these ceramics attractive for microwave tunable devices. Finally, we have tested these ceramics for their application as infrared pyroelectric detectors and we have found that the pyroelectric figure of merit is comparable to traditional lead-containing pyroelectrics.

摘要

在本文中,我们表明基于固溶体(1 - x)(Bi(0.5)Na(0.5))TiO(3)-xBaTiO(3)的无铅铁电陶瓷,其组成处于或接近准同型相界(MPB),其介电常数可通过局部施加电场进行调节。研究了两种组成,一种处于MPB,x = 0.06(BNBT6),另一种更靠近相图的BNT侧,x = 0.04(BNBT4)。通过非谐振方法并同时施加直流电场,在100 MHz至3 GHz的微波频率下测量介电常数的可调性。正如预期的那样,处于MPB的组成(BNBT6)的可调性更高,在900 V/cm的电场下达到最大值60%,相比之下,低于此边界的组成(BNBT4)在640 V/cm的电场下饱和时为40%。两种情况下的高可调性归因于样品的细晶粒和高密度,其具有亚微米级均匀晶粒结构,晶粒尺寸为几百纳米量级。这些特性使这些陶瓷对微波可调器件具有吸引力。最后,我们测试了这些陶瓷作为红外热释电探测器的应用,并且发现热释电优值与传统含铅热释电材料相当。

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