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Ordered arrays of lead zirconium titanate nanorings

机译:钛酸铅锆纳米环的有序阵列

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摘要

Periodic arrays of nanorings of morphotropic phase boundary lead zirconium titanate ( PZT) have been successfully fabricated using a novel self-assembly technique: close-packed monolayers of latex nanospheres were deposited onto Pt-coated silicon substrates, and then plasma cleaned to form ordered arrays of isolated nanospheres, not in contact with each other. Subsequent pulsed laser deposition of PZT, high angle argon ion etching and thermal annealing created the arrays of isolated nanorings, with diameters of similar to 100 nm and wall thicknesses of similar to 10 nm. Energy dispersive x-ray analysis confirms that the rings are compositionally morphotropic phase boundary PZT, and high resolution transmission electron microscopy imaging of lattice fringes demonstrates some periodicities consistent with perovskite rather than pyrochlore material. The dimensions of these nanorings, and the expected 'soft' behaviour of the ferroelectric material from which they are made, means that they offer the most likely opportunity to date for observing whether or not vortex arrangements of electrical dipoles, analogous to those seen in ferromagnetic nanostructures, actually exist.
机译:使用新型自组装技术成功地制备了相变相界钛酸铅锆(PZT)纳米环的周期性阵列:将密堆积的单层乳胶纳米球沉积在涂有Pt的硅基板上,然后进行等离子体清洗以形成有序阵列孤立的纳米球,彼此不接触。随后的PZT脉冲激光沉积,高角度氩离子蚀刻和热退火创建了隔离的纳米环阵列,其直径近似于100 nm,壁厚近似于10 nm。能量色散X射线分析证实了这些环在成分上是同相相界PZT,并且高分辨透射电子显微镜成像的晶格条纹显示出一些与钙钛矿而不是烧绿石材料一致的周期性。这些纳米环的尺寸以及制成它们的铁电材料的预期“软”性能,意味着它们提供了迄今为止最有可能的机会来观察电偶极的涡流排列,类似于在铁磁中看到的那样。纳米结构,实际上存在。

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