Micro Nano System Research Center, College of Information and Computer & Key Lab of Advanced Transducers and Intelligent Control System of the Ministry of Education, Taiyuan University of Technology, Taiyuan 030024, China.
Department of Mechatronics and Vehicle Engineering, Taiyuan University, Taiyuan 030012, China.
ACS Appl Mater Interfaces. 2021 Aug 11;13(31):37316-37322. doi: 10.1021/acsami.1c12443. Epub 2021 Jul 30.
There is always a temperature difference of more than 10 degrees between the human body, as a sustainable heat source, and the ambient temperature. Converting body heat into electricity that in turn is used to drive personal medical electronics is of significance in smart wearable medicine. To avoid the frangibility and complex preparation of traditional thermoelectric materials, we fabricated a gel electrolyte-based thermogalvanic generator with Fe/Fe as a redox pair, which presents not only moderate thermoelectric performance but also excellent flexibility. With a micropore-widespread polyvinylidene fluoride diaphragm implanted in the gel, a thermal barrier was created between the two halves, effectively improving the Seebeck coefficient by reducing its thermal conductivity. Considering the superior temperature response of the gel, a self-powered body temperature monitoring system was established by conformally affixing it to the forehead. Meanwhile, the gel patch with a high specific heat capacity can effectively cool down fever patients. This work may offer a new train of thought for exploiting self-powered wearable medical electronics by scavenging low-grade body heat.
人体作为可持续的热源,其体温与环境温度之间始终存在 10 度以上的温差。将人体热量转化为电能,进而驱动个人医疗电子设备,这在智能可穿戴医疗领域具有重要意义。为了避免传统热电材料的易碎性和复杂制备过程,我们使用 Fe/Fe 作为氧化还原对,制备了一种基于凝胶电解质的热伏打发电机,它不仅具有适中的热电性能,而且还具有出色的柔韧性。通过在凝胶中植入微孔广泛分布的聚偏二氟乙烯隔膜,在两半之间形成了一个热障,通过降低其热导率有效提高了 Seebeck 系数。考虑到凝胶的优越温度响应,通过将其贴合在前额上,建立了一个自供电的体温监测系统。同时,具有高热容量的凝胶贴片可以有效地为发烧患者降温。这项工作可能为利用低品位人体热量来开发自供电可穿戴医疗电子产品提供了新的思路。