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首页> 外文期刊>ACS applied materials & interfaces >High-Performance 0-3 Type Niobate-Based Lead-Free Piezoelectric Composite Ceramics with ZnO Inclusions
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High-Performance 0-3 Type Niobate-Based Lead-Free Piezoelectric Composite Ceramics with ZnO Inclusions

机译:高性能0-3型基于Niobate的无铅压电复合陶瓷,ZnO夹杂物

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摘要

Because of their high toxicity, lead-based materials in electronic devices must be replaced by lead-free piezoelectric materials. However, some issues remain that hinder the industrial applications of these alternative ceramics. Here, we report the construction of a 0-3-type ceramic composite (KNNS BNKZ:xZnO), where the Sb-doped ZnO submicronic particles were randomly distributed throughout the potassium sodium niobate-based ceramic matrix. In this (K,Na)NbO3 (KNN)-based ceramic composite, superior temperature stability, excellent piezoelectric properties, and a high Curie temperature were simultaneously achieved. The unipolar strain varied from +20 to 16% when the temperature was increased from 23 to 200 degrees C in KNNS-BNKZ:xZnO with x = 0.75. By increasing the ZnO content from x = 0 to x = 5.0, the Curie temperature was increased from 227 to 294 degrees C. More importantly, the piezoelectric coefficient remained high (d(33) = 480-510 pC/N) for a wide range of compositions, x = 0.25-1.0. Transmission electron microscopy (TEM) experiments showed that the compensatory electric fields generated by the Sb-doped ZnO submicronic particles were responsible for the improved temperature stability. The high piezoelectricity was due to the existence of nanodomains, which were clearly observed in the TEM experiments. The results presented in this work clarify some of the physical mechanisms in this KNN-based ceramic composite, thus advancing the development of lead-free ceramics.
机译:由于它们的高毒性,电子设备中的铅基材料必须由无铅压电材料代替。然而,一些问题仍然阻碍了这些替代陶瓷的工业应用。在这里,我们报告了0-3型陶瓷复合物(KNNS BNKZ:XZNO)的构建,其中SB掺杂的ZnO亚型粒子随机分布在整个铌酸钠基陶瓷基质中。在该(K,Na)NbO 3(KnN)中,基于陶瓷复合材料,同时达到了优异的温度稳定性,优异的压电性能和高居里温度。当在KNNS-BNKZ中的温度从23-20摄氏度增加时,单极应变从+20%到16%变化:XZNO,X = 0.75。通过从x = 0到x = 5.0增加ZnO含量,居里温度从227增加到294℃。更重要的是,压电系数仍然很高(D(33)= 480-510cc / n)组合物的范围,x = 0.25-1.0。透射电子显微镜(TEM)实验表明,Sb掺杂ZnO潜粒粒子产生的补偿电场负责改进的温度稳定性。高压电性是由于在TEM实验中清楚地观察到的纳米染色物。在这项工作中提出的结果阐明了基于KNN的陶瓷复合材料中的一些物理机制,从而推动了无铅陶瓷的发育。

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