Bendable Electronics and Sensing Technologies (BEST) Group, School of Engineering, University of Glasgow, Glasgow, G12 8QQ, UK.
Adv Mater. 2020 Jun;32(24):e1907254. doi: 10.1002/adma.201907254. Epub 2020 May 11.
A sweat-based flexible supercapacitor (SC) for self-powered smart textiles and wearable systems is presented. The developed SC uses sweat as the electrolyte and poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) as the active electrode. With PEDOT:PSS coated onto cellulose/polyester cloth, the SC shows specific capacitance of 8.94 F g (10 mF cm ) at 1 mV s . With artificial sweat, the energy and power densities of the SC are 1.36 Wh kg and 329.70 W kg , respectively for 1.31 V and its specific capacitance is 5.65 F g . With real human sweat the observed energy and power densities are 0.25 Wh kg , and 30.62 W kg , respectively. The SC performance is evaluated with different volumes of sweat (20, 50, and 100 µL), bending radii (10, 15, 20 mm), charging/discharging stability (4000 cycles), and washability. With successful on-body testing, the first demonstration of the suitability of a sweat-based SC for self-powered cloth-based sensors to monitor sweat salinity is presented. With attractive performance and the use of body fluids, the presented approach is a safe and sustainable route to meet the power requirements in wearable systems.
一种基于汗液的柔性超级电容器(SC),用于自供电智能纺织品和可穿戴系统,被呈现出来。所开发的 SC 使用汗液作为电解质,聚(3,4-亚乙基二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)作为活性电极。通过将 PEDOT:PSS 涂覆在纤维素/聚酯布上,SC 在 1 mV s 时表现出 8.94 F g(10 mF cm )的比电容。使用人工汗液,SC 的能量和功率密度分别为 1.36 Wh kg 和 329.70 W kg,对应于 1.31 V 和其 5.65 F g 的比电容。使用真实人体汗液,观察到的能量和功率密度分别为 0.25 Wh kg 和 30.62 W kg。通过不同体积的汗液(20、50 和 100 µL)、弯曲半径(10、15 和 20 mm)、充放电稳定性(4000 个循环)和可洗性来评估 SC 的性能。通过成功的体内测试,首次展示了基于汗液的 SC 用于自供电基于织物的传感器来监测汗液盐度的适用性。由于具有吸引人的性能和使用体液,所提出的方法是满足可穿戴系统功率要求的安全且可持续的途径。