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Piezoelectricity of lead-free (K, Na)NbO3 nanoscale single crystals

机译:无铅(K,Na)NbO3纳米级单晶的压电

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摘要

(K, Na)NbO3 (KNN) is a promising lead-free compound that is more suitable for piezoelectric applications requiring environmental or even biological compatibility than the traditional lead-based Pb(Zr, Ti)O3 systems. In this work, we synthesized single crystalline KNN nanorods (NRs) with various K/Na ratios, which were used as ideal specimens for investigating the compositional dependence of piezoelectricity. Piezoresponse force microscopy (PFM) was utilized to characterize the three-dimensional (3-D) morphology and piezoelectric properties of single crystalline KNN NRs. A phase boundary was confirmed around a K/Na ratio of ~45/55 based on local switching behavior, whereby enhanced piezoresponse in KNN single crystals was obtained with specific domain structures. The methodology demonstrated in this work can also be applied for further fundamental studies on KNN as well as other lead-free piezoelectric materials.
机译:(K,Na)NbO3(KNN)是一种有前途的无铅化合物,与传统的基于铅的Pb(Zr,Ti)O3系统相比,它更适合需要环境甚至生物相容性的压电应用。在这项工作中,我们合成了具有不同K / Na比的单晶KNN纳米棒(NRs),它们被用作研究压电成分依赖性的理想样本。压电响应显微镜(PFM)用于表征单晶KNN NR的三维(3-D)形态和压电特性。基于局部开关行为,在大约45/55的K / Na比附近确定了相边界,从而在KNN单晶中具有特定的畴结构获得了增强的压电响应。这项工作中证明的方法学也可以应用于有关KNN以及其他无铅压电材料的进一步基础研究。

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