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High-Performance Flexible PANI/PLA Textiles with Antibacterial, Flame Retardant and Electromagnetic Shielding for All-Solid-State Supercapacitors and Sensors

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Abstract

High-performance flexible electronic textiles exhibit considerable potential for use as wearable energy storage and sensor fields. In this paper, we fabricated multifunctional PANI/PLA composite electronic fabrics by a simple in-situ polymerization reaction. The fabrics have an areal specific capacitance of 1171.4 mF/cm2 when used as an electrode, and the capacitance retention of 93.02% after 2000 charge/discharge cycles. The symmetric all-solid-state supercapacitors assembled based on PANI/PLA fabrics demonstrated an attractive capacitive performance with a high energy density of 30.27 μWh/cm2 at a power density of 0.217 mW/cm2. Meanwhile, the PANI/PLA electronic fabrics can also be used as flexible sensors to monitor the movement of the human body in real time. More importantly, the PANI/PLA functional fabrics also possess good flame retardant performance, antibacterial and electromagnetic shielding properties. These results indicate that the prepared PANI-coated PLA fabrics have broad application potential in wearable electronic textiles.

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Correspondence to Jin Fang, Guangzhi Zhang or Zhenzhen Xu.

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Fang, J., Meng, C., Zhang, G. et al. High-Performance Flexible PANI/PLA Textiles with Antibacterial, Flame Retardant and Electromagnetic Shielding for All-Solid-State Supercapacitors and Sensors. Fibers Polym 24, 1015–1028 (2023). https://doi.org/10.1007/s12221-023-00107-w

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