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首页> 外文期刊>Nanoscale >A photonic sintering derived Ag flake/nanoparticle-based highly sensitive stretchable strain sensor for human motion monitoring
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A photonic sintering derived Ag flake/nanoparticle-based highly sensitive stretchable strain sensor for human motion monitoring

机译:一个光子烧结Ag)派生而来片/ nanoparticle-based高度敏感可伸缩的应变传感器对人类运动监控

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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.
机译:最近,可伸缩的需求压力传感器用于检测人类的运动迅速增加。高性能的应变传感器基于Ag)片/ Ag纳米晶体(NC)混合材料纳入一个聚二甲基硅氧烷(PDMS)弹性体。片网络增强了电电导率和敏感的压力传感器。片/ nc强脉冲光引起的(IPL)照射,实现有效的烧结Ag的nc在其次,在不损害PDMS矩阵。提高传感器灵敏度。传感器是高度可伸缩的(最大应变=80%)和高的敏感(应变系数= 7.1)机械稳定性超过10 000拉伸周期应变50%以下。演示中,智能制造的手套检测手指的运动和运动带测量应用的手臂力量也提出了。体制造方法elastomer-based高性能可伸缩元件。

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