Deep learning-enabled real-time personal handwriting electronic skin with dynamic thermoregulating ability

The rapid rise of the Internet of things (IoT) have brought the progress of electronic skin (e-skin). E-skin is used to imitate or even surpass the functions of human skin. Thermoregulating is one of the crucial functions of human skin, it is significant to develop a universal way to realize e-skin...

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Veröffentlicht in:Npj flexible electronics 2022-07, Vol.6 (1), p.1-11, Article 59
Hauptverfasser: Xiang, Shengxin, Tang, Jiafeng, Yang, Lei, Guo, Yanjie, Zhao, Zhibin, Zhang, Weiqiang
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Sprache:eng
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Zusammenfassung:The rapid rise of the Internet of things (IoT) have brought the progress of electronic skin (e-skin). E-skin is used to imitate or even surpass the functions of human skin. Thermoregulating is one of the crucial functions of human skin, it is significant to develop a universal way to realize e-skin thermoregulating. Here, inspired by the sweat gland structure in human skin, we report a simple method for achieving dynamic thermoregulating, attributing to the temperature of microencapsulated paraffin remains unchanged when phase change occurs. Combining with the principle of triboelectric nanogenerator, a deep learning model is employed to recognize the output signals of handwriting different letters on ME-skin, and the recognition accuracy reaches 98.13%. Finally, real-time recognition and display of handwritings are successfully implemented by the ME-skin, which provides a general solution for thermoregulating e-skin and application direction for e-skin in the field of IoT.
ISSN:2397-4621
2397-4621
DOI:10.1038/s41528-022-00195-3