透视功能材料的纳米PZT薄膜

M. Waegner, G. Suchaneck, G. Gerlach, L. Eng, A. Finn
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引用次数: 0

摘要

在这项工作中,我们描述了由聚合物层隔离并与顶部电极接触的PZT纳米片阵列的制造。采用多靶溅射法在铂/钛底电极上沉积PZT薄膜,并采用纳米球光刻技术制备PZT薄膜。为了保证顶部电极不会短路蒸发,纳米结构之间的空间被聚合物填充。演示了两种填充方法:(i)压印和(ii)脱脂涂层。嵌入柔性聚合物基质中的单个纳米片具有两个主要优点。首先,考虑到矩阵的灵活性,它们可以在横向上自由振动;其次,由于缩小到纳米尺度,极化形式的主要方向,如涡状或气泡状的区域模式。对带顶电极和不带顶电极的图案和非图案样品进行了压电响应力显微镜检查,以检查局部的压电响应。两种样品的比较显示,增加横向压电活性的图案样品,而面外的压电响应保持不变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nano-patterned PZT films for perspective functional materials
In this work, we describe the fabrication of PZT nanodisc arrays isolated by a polymer layer and contacted with a top electrode. PZT thin films were deposited by multi-target sputtering onto a platinum/titanium bottom electrode and structured by means of nanosphere lithography. To guarantee short-circuit-free evaporation of a top electrode, the space between the nanostructures was filled by a polymer. Two approaches for the filling are demonstrated: (i) imprinting and (ii) skim coating. Single nanodiscs embedded in a flexible polymer matrix have two major advantages. First, taking into account the flexibility of the matrix they can vibrate freely in lateral direction and, second, due to shrinking to the nanoscale, predominant directions of the polarization form, such as vortex-or bubble-like domain patterns. Piezoresponse force microscopy was performed on patterned and non-patterned samples with and without a top electrode to check the local piezoresponse. Comparison of both samples revealed an increase in lateral piezoactivity for patterned samples while the out-of-plane piezoresponse remained constant.
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