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具有裂纹稻穗状 MoS₂/石墨烯泡沫/弹性体杂化纳米结构的高灵敏可拉伸压力传感器。

Highly Sensitive and Flexible Strain-Pressure Sensors with Cracked Paddy-Shaped MoS/Graphene Foam/Ecoflex Hybrid Nanostructures.

机构信息

Graphene Research Lab., Emerging Devices Research Group , Electronics and Telecommunications Research Institute (ETRI) , Daejeon 34129 , Republic of Korea.

School of ETRI (ICT-Advanced Device Technology) , University of Science and Technology (UST) , Daejeon 34113 , Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 24;10(42):36377-36384. doi: 10.1021/acsami.8b11233. Epub 2018 Oct 12.

Abstract

Three-dimensional graphene porous networks (GPNs) have received considerable attention as a nanomaterial for wearable touch sensor applications because of their outstanding electrical conductivity and mechanical stability. Herein, we demonstrate a strain-pressure sensor with high sensitivity and durability by combining molybdenum disulfide (MoS) and Ecoflex with a GPN. The planar sheets of MoS bonded to the GPN were conformally arranged with a cracked paddy shape, and the MoS nanoflakes were formed on the planar sheet. The size and density of the MoS nanoflakes were gradually increased by raising the concentration of (NH)MoS. We found that this conformal nanostructure of MoS on the GPN surface can produce improved resistance variation against external strain and pressure. Consequently, our MoS/GPN/Ecoflex sensors exhibited noticeably improved sensitivity compared to previously reported GPN/polydimethylsiloxane sensors in a pressure test because of the existence of the conformal planar sheet of MoS. In particular, the MoS/GPN/Ecoflex sensor showed a high sensitivity of 6.06 kPa at a (NH)MoS content of 1.25 wt %. At the same time, it displayed excellent durability even under repeated loading-unloading pressure and bending over 4000 cycles. When the sensor was attached on a human temple and neck, it worked correctly as a drowsiness detector in response to motion signals such as neck bending and eye blinking. Finally, a 3 × 3 tactile sensor array showed precise touch sensing capability with complete isolation of electrodes from each other for application to touch electronic applications.

摘要

三维石墨烯多孔网络(GPN)因其出色的导电性和机械稳定性而作为可穿戴触摸传感器应用的纳米材料受到了广泛关注。在此,我们通过将二硫化钼(MoS)和 Ecoflex 与 GPN 结合,展示了一种具有高灵敏度和耐用性的应变-压力传感器。GPN 上的 MoS 平面片以龟裂的稻田形状进行共形排列,并且 MoS 纳米薄片形成在平面片上。通过提高(NH)MoS 的浓度,MoS 纳米薄片的尺寸和密度逐渐增加。我们发现,GPN 表面上这种 MoS 的共形纳米结构可以产生对外部应变和压力的改进的电阻变化。因此,与之前报道的 GPN/聚二甲基硅氧烷传感器相比,我们的 MoS/GPN/Ecoflex 传感器在压力测试中表现出明显提高的灵敏度,这是由于存在共形的 MoS 平面片。特别是,MoS/GPN/Ecoflex 传感器在(NH)MoS 含量为 1.25wt%时表现出 6.06kPa 的高灵敏度。同时,即使在重复加载-卸载压力和超过 4000 次弯曲的情况下,它也表现出出色的耐用性。当传感器附着在人的太阳穴和颈部时,它可以作为瞌睡检测器正常工作,响应颈部弯曲和眨眼等运动信号。最后,一个 3×3 触摸传感器阵列显示出精确的触摸感应能力,彼此之间的电极完全隔离,适用于触摸电子应用。

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