School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
Department of Research and Development, SEMS Co. Ltd, Suwon, 16229, Republic of Korea.
Adv Mater. 2024 Aug;36(32):e2402491. doi: 10.1002/adma.202402491. Epub 2024 Jun 11.
Self-powered electrical bandages (SEBs), integrated with wearable energy harvesters, can provide an effective and autonomous electrical stimulation (ES) solution for rapid and scarless wound healing. A continuously operating, wireless, and applicable-to-comprehensive-wound ES device is essential for the quick restoration of wounds and convenience. This work illustrates a SEB powered by body-coupled energy harvesting. The SEB continuously treats the wound with 60-Hz sinusoidal electrical potential gained from the coupling of the human body and ambient electrical waves. It is demonstrated that enough level of electrical potential can be applied to the wound, further enhanced by strong capacitive coupling arising from the use of high-permittivity poly(vinylidene fluoride-trifluoroethylene):CaCuTiO (P(VDF-TrFE):CCTO) nanocomposite. The potential clinical efficacy of the SEB is illustrated by preclinical analysis of human fibroblasts and mouse wound model, thus confirming the successful expedition of wound recovery. This work suggests a new class of wearable devices to provide ES events and its potential for extension to other conventional wound care materials and device technology.
自供电电绷带(SEB)与可穿戴能量收集器集成,可以为快速无疤痕伤口愈合提供有效的自主电刺激(ES)解决方案。持续运行、无线且适用于综合伤口的 ES 设备对于快速恢复伤口和便利性至关重要。这项工作说明了一种由体耦合能量收集驱动的 SEB。SEB 利用人体与环境电波的耦合产生的 60Hz 正弦电势持续治疗伤口。实验表明,可以向伤口施加足够水平的电势,并且通过使用高介电常数聚(偏二氟乙烯-三氟乙烯):CaCuTiO(P(VDF-TrFE):CCTO)纳米复合材料产生的强电容耦合进一步增强了电势。通过对人成纤维细胞和小鼠伤口模型的临床前分析,说明了 SEB 的潜在临床疗效,从而证实了伤口恢复的成功。这项工作提出了一类新的可穿戴设备,以提供 ES 事件及其在其他传统伤口护理材料和设备技术中的扩展潜力。