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Embedded ferroelectric nanostructure arrays

机译:嵌入式铁电纳米结构阵列

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摘要

Ferroelectrics hold promise for high-density non-volatile data storage device use. Their eventual performance will strongly depend on the available displacement current, which primarily scales with the area but might to some extent be enhanced by substrate-induced homogeneous strain while the interface at the same time controls the coercive field. As the lateral dimensions persistently decrease, the only way to keep track of the real figures of merit with realistic electrodes is to use a macroscopic configuration instead of scanning probe approaches with undefined interfaces. We report on a novel approach to integrating arbitrarily patterned, highly registered ferroelectric nanoislands fabricated by a template controlled chemical solution deposition approach into a matrix of a low-k dielectric spin-on glass. These structures with a narrow lateral size distribution below 100 nm are subsequently polished in a chemical-mechanical polishing step to expose their very tops, whose piezoelectrically active area depends on the polishing time. At this stage our findings indicate a full piezoelectric functionality of the locally exposed nanoislands. The structures are ready for macroscopic top electrodes to average the displacement current over hundreds of almost identical structures, to provide a nanoscale scaling behaviour of the individual ferroelectric capacitors.
机译:铁电材料有望用于高密度非易失性数据存储设备。它们的最终性能将在很大程度上取决于可用的位移电流,该位移电流主要随面积成比例,但在一定程度上可以通过基底引起的均匀应变来增强,而界面同时控制矫顽场。随着横向尺寸的持续减小,使用真实电极跟踪真实品质因数的唯一方法是使用宏观配置,而不是使用具有未定义界面的扫描探针方法。我们报告了一种新颖的方法,该方法将通过模板控制化学溶液沉积方法制造的任意图案化,高度配准的铁电纳米岛集成到低k介电旋涂玻璃的矩阵中。随后在化学机械抛光步骤中对这些横向尺寸分布窄的结构进行100 nm以下的抛光,以露出其顶部,其顶部的压电有效面积取决于抛光时间。在这一阶段,我们的发现表明局部暴露的纳米岛具有完全的压电功能。这些结构已准备好供宏观上电极在数百个几乎相同的结构上平均位移电流,以提供各个铁电电容器的纳米级缩放行为。

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