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Ferroelectric Lead Zirconate Titanate and Barium Titanate Nanoshell Tubes

机译:铁电铅锆钛酸钛和钛酸钡纳米醚管

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Wetting of the pore walls of porous templates is a simple and convenient method to prepare nanoshell tubes. Wafer-scale fabrication of ferroelectric lead zirconate titanate and barium titanate nanoshell tubes was accomplished by wetting porous silicon templates with polymeric precursors. The ferro- and piezoelectric properties of an individual ferroelectric nanoshell tube either of PZT or of BaTiO_3 were electrically characterized by measuring the local piezoelectric hysteresis. A sharp switching at the coercive voltage of about 2 V was shown from the hysteresis loop. The corresponding effective remnant piezoelectric coefficient is about 90 pm/V. We have also prepared highly ordered arrays of free-standing ferroelectric nanoshell tubes obtained by partial etching of the silicon template. Such materials might be used as building blocks of miniaturized devices and could have a significant impact in the field of nano-electromechanical systems.
机译:多孔模板的孔壁的润湿是制备纳米孔管的简单方便的方法。通过将多孔硅模板用聚合物前体润湿多孔硅模板完成铁电铅锆钛酸钛酸盐和钛酸钡纳米胺管的晶片规模制备。通过测量局部压电滞后,各个铁电纳米孔管的各个铁电纳米壳管的铁料和压电性能通过测量局部压电滞后。从滞后回路中示出了在约2V的矫顽电压下的急剧切换。相应的有效残余压电系数约为90μm/ v。我们还制备了通过部分蚀刻硅模板而获得的高度有序的独立铁电纳米醚管。这些材料可用作小型化装置的构建块,并且可以在纳米机电系统领域产生显着影响。

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