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Crack-induced Ag nanowire networks for transparent stretchable and highly sensitive strain sensors

机译:裂纹诱导的Ag纳米线网络用于透明可拉伸和高度敏感的应变传感器

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摘要

Crack-based strain sensor systems have been known for its high sensitivity, but suffer from the small fracture strain of the thin metal films employed in the sensor which results in its negligible stretchability. Herein, we fabricated a transparent (>90% at 550 nm wavelength), stretchable (up to 100%), and sensitive (gauge factor (GF) of 30 at 100% strain) strain gauge by depositing an encapsulated crack-induced Ag nanowire (AgNW) network on a hydroxylated poly(dimethylsiloxane) (PDMS) film. Stretching the encapsulated AgNWs/PDMS resulted in the formation of a percolation network of nanowire ligaments with abundant percolation paths. The encapsulating polymer was designed to adhere strongly to both the AgNW and PDMS. The improved adhesion ensured the resistance of the crack-induced network of AgNWs varied reversibly, stably, and sensitively when stretched and released, at strains of up to 100%. The developed sensor successfully detected human motions when applied to the skin.
机译:基于裂纹的应变传感器系统以其高灵敏度而闻名,但由于传感器中使用的金属薄膜的断裂应变小,导致其拉伸性可忽略不计。在这里,我们通过沉积封装的裂纹诱导的银纳米线,制造了透明的(在550 nm波长> 90%),可拉伸的(高达100%)和灵敏的(应变系数(GF)在30%时为30)。 (AgNW)网络在羟基化的聚(二甲基硅氧烷)(PDMS)膜上。拉伸封装的AgNWs / PDMS导致形成具有丰富渗透路径的纳米线韧带的渗透网络。包封聚合物被设计为牢固地粘附到AgNW和PDMS上。改进的附着力确保了在高达100%的应变下,AgNW的裂纹诱导网络的抗性在拉伸和释放时可逆,稳定和敏感地变化。研发的传感器在应用于皮肤时能够成功检测到人体运动。

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