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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A decade of piezoresponse force microscopy: progress, challenges, and opportunities
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A decade of piezoresponse force microscopy: progress, challenges, and opportunities

机译:压电响应力显微镜十年:进展,挑战和机遇

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Coupling between electrical and mechanical phenomena is a near-universal characteristic of inorganic and biological systems alike, with examples ranging from piezoelectricity in ferroelectric perovskites to complex, electromechanical couplings in electromotor proteins in cellular membranes. Understanding electromechanical functionality in materials such as ferroelectric nanocrystals and thin films, relaxor ferroelectrics, and biosystems requires probing these properties on the nanometer level of individual grain, domain, or protein fibril. In the last decade, piezoresponse force microscopy (PFM) was established as a powerful tool for nanoscale imaging, spectroscopy, and manipulation of ferroelectric materials. Here, we present principles and recent advances in PFM, including vector and frequency-dependent imaging of piezoelectric materials, briefly review applications for ferroelectric materials, discuss prospects for electromechanical imaging of local crystallographic and molecular orientations and disorder, and summarize future challenges and opportunities for PFM emerging in the second decade since its invention
机译:电气和机械现象之间的耦合几乎是无机系统和生物系统的普遍特征,其示例范围包括铁电钙钛矿中的压电性到细胞膜中电动蛋白中复杂的机电耦合。要了解铁电纳米晶体和薄膜,驰豫铁电材料以及生物系统等材料的机电功能,需要在单个晶粒,区域或蛋白质原纤维的纳米级上探测这些特性。在过去的十年中,压电响应力显微镜(PFM)被确立为纳米级成像,光谱学和铁电材料操纵的有力工具。在这里,我们介绍了PFM的原理和最新进展,包括压电材料的矢量和频率相关成像,简要回顾了铁电材料的应用,讨论了局部晶体学和分子取向和无序的机电成像的前景,并总结了未来的挑战和机遇。自发明以来的第二个十年中出现了PFM

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