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    Han-bai Lyu, Xin-yu Ping, Rui-quan Gao, Liang-liang Xu, Li-jia Pan. Transparent Electronic Skin Device Based on Microstructured Silver Nanowire Electrode[J]. Chinese Journal of Chemical Physics , 2017, 30(5): 603-608. DOI: 10.1063/1674-0068/30/cjcp1706126
    Citation: Han-bai Lyu, Xin-yu Ping, Rui-quan Gao, Liang-liang Xu, Li-jia Pan. Transparent Electronic Skin Device Based on Microstructured Silver Nanowire Electrode[J]. Chinese Journal of Chemical Physics , 2017, 30(5): 603-608. DOI: 10.1063/1674-0068/30/cjcp1706126

    Transparent Electronic Skin Device Based on Microstructured Silver Nanowire Electrode

    • Transparent, flexible electronic skin holds a wide range of applications in robotics, humanmachine interfaces, artificial intelligence, prosthetics, and health monitoring. Silver nanowire are mechanically flexible and robust, which exhibit great potential in transparent and electricconducting thin film. Herein, we report on a silver-nanowire spray-coating and electrodemicrostructure replicating strategy to construct a transparent, flexible, and sensitive electronic skin device. The electronic skin device shows highly sensitive piezo-capacitance response to pressure. It is found that micropatterning the surface of dielectric layer polyurethane elastomer by replicating from microstructures of natural-existing surfaces such as lotus leaf, silk, and frosted glass can greatly enhance the piezo-capacitance performance of the device. The microstructured pressure sensors based on silver nanowire exhibit good transparency, excellent flexibility, wide pressure detection range (0-150 kPa), and high sensitivity (1.28 kPa-1).
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