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Stretchable Biofuel Cells as Wearable Textile-based Self-Powered Sensors

机译:可拉伸生物燃料电池作为可穿戴的基于纺织品的自供电传感器

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摘要

Highly stretchable textile-based biofuel cells (BFCs), acting as effective self-powered sensors, have been fabricated using screen-printing of customized stress-enduring inks. Due to synergistic effects of nanomaterial-based engineered inks and the serpentine designs, these printable bioelectronic devices endure severe mechanical deformations, e.g., stretching, indentation, or torsional twisting. Glucose and lactate BFCs with the single enzyme and membrane-free configurations generated the maximum power density of 160 and 250 µW cm−2 with the open circuit voltages of 0.44 and 0.46 V, respectively. The textile-BFCs were able to withstand repeated severe mechanical deformations with minimal impact on its structural integrity, as was indicated from their stable power output after 100 cycles of 100% stretching. By providing power signals proportional to the sweat fuel concentration, these stretchable devices act as highly selective and stable self-powered textile sensors. Applicability to sock-based BFC and self-powered biosensor and mechanically compliant operations was demonstrated on human subjects. These stretchable skin-worn “scavenge-sense-display” devices are expected to contribute to the development of skin-worn energy harvesting systems, advanced non-invasive self-powered sensors and wearable electronics on a stretchable garment.
机译:高度可拉伸的基于纺织品的生物燃料电池(BFC),用作有效的自供电传感器,已通过使用丝网印刷定制的耐压油墨来制造。由于基于纳米材料的工程墨水和蛇形设计的协同作用,这些可打印的生物电子设备可承受严重的机械变形,例如拉伸,压痕或扭转扭曲。具有单一酶和无膜结构的葡萄糖和乳酸BFC在开路电压分别为0.44和0.46 V时产生的最大功率密度分别为160和250 µW cm -2 。从100%拉伸100次循环后获得的稳定功率输出可以看出,纺织品BFC能够承受反复的严重机械变形,对其结构完整性的影响最小。通过提供与汗液燃料浓度成比例的功率信号,这些可伸缩设备充当高度选择性和稳定的自供电纺织品传感器。在人类受试者身上证明了其适用于基于袜子的BFC和自供电生物传感器以及符合机械要求的操作。这些可伸缩的皮肤破损“扫视显示显示器”设备有望为可伸缩服装上的皮肤破损能量收集系统,先进的非侵入式自供电传感器和可穿戴电子设备的开发做出贡献。

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