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Perovskite lead zirconium titanate nanorings: Towards nanoscale ferroelectric 'solenoids'?

机译:钙钛矿钛酸锆锆纳米环:向纳米铁电“电磁体”迈进?

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摘要

Rings of perovskite lead zirconium titanate (PZT) with internal diameters down to ~ 5 nm and ring thicknesses of ~ 5-10nm have been fabricated and structurally, crystallographically, and chemically characterized using an analytical transmission electron microscope. Ring fabrication involved conformal solution deposition of a thin layer of PZT on the inside of a thin film of anodized aluminum oxide nanopores, and subsequent sectioning of the coated pores perpendicular to their cylinder axes. Although the starting solution used for the solution deposition was made from morphotropic phase boundary PZT, the nanorings were found to be on the zirconium-rich side of the PZT phase diagram. Nevertheless, coatings were found to be of perovskite crystallography. The dimensions of these nanorings are such that they have the potential to demonstrate polarization vortices, as modeled by Naumov et al. [Nature (London) 432, 737 (2004)], and moreover represent the perfect morphology to allow vortex alignment and the creation of the ferroelectric "solenoid" as modeled by Gorbatsevich and Kopaev [Ferroelectrics 161, 321 (1994)].
机译:使用分析型透射电子显微镜已制造出钙钛矿钛酸锆钛酸铅(PZT)环,其内径低至约5 nm,环厚约5-10nm。环形制造涉及在阳极氧化氧化铝纳米孔薄膜的内部保形溶液沉积PZT薄层,以及随后垂直于其圆柱轴对涂层孔进行切片。尽管用于溶液沉积的起始溶液是由相变相边界PZT制成的,但发现纳米环在PZT相图的富锆侧。然而,发现涂层是钙钛矿晶体学的。这些纳米环的尺寸应使其具有证明极化旋涡的潜力,如Naumov等人所模拟。 [Nature(London)432,737(2004)],此外,它代表了理想的形态,允许涡旋对准和铁电“电磁电磁场”的产生,如Gorbatsevich和Kopaev [Ferroelectrics 161,321(1994)]所模拟的。

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