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基于简便制备法的氧化铝辅助双面纳米柱低成本柔性电容压力传感器。

Anodized Aluminum Oxide-Assisted Low-Cost Flexible Capacitive Pressure Sensors Based on Double-Sided Nanopillars by a Facile Fabrication Method.

出版信息

ACS Appl Mater Interfaces. 2019 Dec 26;11(51):48594-48603. doi: 10.1021/acsami.9b17966. Epub 2019 Dec 11.

Abstract

Flexible pressure sensors have garnered enormous attention in recent years as they hold great promise in wearable electronic devices. However, the realization of a high-performance flexible pressure sensor via a facile and cost-effective approach still remains a challenge. In this work, a capacitive pressure sensor based on a poly(vinylidenefluoride--trifluoroethylene) [P(VDF-TrFE)] dielectric film that incorporates nanopillars into both sides is demonstrated. Unlike the previous complicated and expensive methods, large-scale regular and uniform nanopillars are easily and economically achieved by the pattern transfer of anodized aluminum oxide templates. The double-sided nanopillars constituting the P(VDF-TrFE) dielectric layer enable the pressure sensor with high sensitivity (∼0.35 kPa), wide working range (4 Pa to 25 kPa), short response time (∼48 ms), and excellent durability. In addition to these salient features, our sensor also exhibits superior performances under bending states, ensuring that it can be used for detecting diverse practical stimuli as experimentally validated by perceiving real-time and in-site human physiological signals and body motions that, respectively, correspond to the low- and high-pressure range. A sensor array is finally constructed and is shown to be capable of perceiving the spatial pressure distribution of either a contact or noncontact object. These demonstrations show a promising future of our sensor in healthcare monitoring, smart robot skin, and human-machine interfaces.

摘要

近年来,柔性压力传感器因其在可穿戴电子设备中的巨大应用前景而备受关注。然而,通过简单且具有成本效益的方法实现高性能柔性压力传感器仍然是一个挑战。在这项工作中,展示了一种基于聚偏二氟乙烯-三氟乙烯(P(VDF-TrFE))介电膜的电容式压力传感器,该介电膜在两侧都嵌入了纳米柱。与之前复杂且昂贵的方法不同,通过氧化铝模板的图案转移,可以轻松且经济地实现大规模规则且均匀的纳米柱。构成 P(VDF-TrFE)介电层的双面纳米柱使压力传感器具有高灵敏度(约 0.35 kPa)、宽工作范围(4 Pa 至 25 kPa)、短响应时间(约 48 ms)和出色的耐用性。除了这些显著特点外,我们的传感器在弯曲状态下也表现出卓越的性能,确保它可以用于检测各种实际刺激,这通过感知实时和现场人体生理信号和身体运动得到了验证,这些信号和运动分别对应低压力范围和高压力范围。最后构建了一个传感器阵列,并展示了其感知接触或非接触物体的空间压力分布的能力。这些演示展示了我们的传感器在医疗保健监测、智能机器人皮肤和人机界面方面的广阔应用前景。

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