Department of Materials Science and Engineering, Yonsei University, Seoul 03722, Republic of Korea.
Advanced Manufacturing Systems Research Division, Korea Institute of Machinery and Materials (KIMM), Daejeon 305-343, Republic of Korea.
Nanoscale. 2018 May 3;10(17):7890-7897. doi: 10.1039/C7NR09421C.
Recently, the demand for stretchable strain sensors used for detecting human motion is rapidly increasing. This paper proposes high-performance strain sensors based on Ag flake/Ag nanocrystal (NC) hybrid materials incorporated into a polydimethylsiloxane (PDMS) elastomer. The addition of Ag NCs into an Ag flake network enhances the electrical conductivity and sensitivity of the strain sensors. The intense localized heating of Ag flakes/NCs is induced by intense pulsed light (IPL) irradiation, to achieve efficient sintering of the Ag NCs within a second, without damaging the PDMS matrix. This leads to significant improvement in the sensor sensitivity. Our strain sensors are highly stretchable (maximum strain = 80%) and sensitive (gauge factor = 7.1) with high mechanical stability over 10 000 stretching cycles under 50% strain. For practical demonstration, the fabrication of a smart glove for detecting the motions of fingers and a sports band for measuring the applied arm strength is also presented. This study provides an effective method for fabricating elastomer-based high-performance stretchable electronics.
最近,用于检测人体运动的可拉伸应变传感器的需求迅速增加。本文提出了一种基于 Ag 薄片/Ag 纳米晶(NC)混合材料的高性能应变传感器,该材料掺入聚二甲基硅氧烷(PDMS)弹性体中。Ag NCs 的加入增强了应变传感器的导电性和灵敏度。通过强脉冲光(IPL)照射,Ag 薄片/NCs 会产生强烈的局部加热,从而在一秒钟内实现 Ag NCs 的高效烧结,而不会损坏 PDMS 基体。这导致传感器灵敏度显著提高。我们的应变传感器具有高拉伸性(最大应变=80%)和灵敏度(应变系数=7.1),在 50%应变下经过 10000 多次拉伸循环后仍具有很高的机械稳定性。为了实际演示,还展示了一种用于检测手指运动的智能手套和一种用于测量手臂受力的运动带的制作。这项研究为制造基于弹性体的高性能可拉伸电子产品提供了一种有效方法。