Abstract
As the Internet of Things (IoT) expands, electronics will take on new form factors. With the ubiquity of textiles in our daily lives, integrating functionality into them is a promising proposition. Realizing a future with textile-based electronics (e-textiles) will require on-textile power supplies. Due to their high conductivity, electrochemically active surface, and ability to produce additive-free coatings from aqueous inks, MXenes are an ideal material to integrate into textiles to add functionality as well as generate and store electrical energy. Herein, we demonstrate an on-garment energy grid utilizing MXenes in textile-based supercapacitors and wireless chargers. Our on-garment energy grid can power real-world electronics, including peripheral electronics performing environmental sensing and data transmission, including an all-MXene surface electromyography (sEMG) sensor with real-time data transmission. Finally, we create a fully wireless textile-MXene joule heater directly powered by our MXene coil.
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Inman, A., Mohammadlou, B. S., Shevchuk, K., FitzPatrick, J., Park, J. W., Pacik-Nelson, N., … Gogotsi, Y. (2024). MXene-enabled textile-based energy grid utilizing wireless charging. Materials Today, 81, 59–69. https://doi.org/10.1016/j.mattod.2024.10.008
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