Gao Wei, Wang Yang, Lai Feili
John A. Paulson School of Engineering and Applied Sciences Harvard University Cambridge Massachusetts USA.
Department of Chemistry KU Leuven Leuven Belgium.
Smart Med. 2022 Dec 22;1(1):e20220016. doi: 10.1002/SMMD.20220016. eCollection 2022 Dec.
In recent decades, there has been increased research interest in miniaturizing and decentralizing diagnostic platforms to enable continuous personalized healthcare and free patients from long-term hospitalization. However, the lack of reliable and portable power supplies has limited the working time of the personalized healthcare platform. Compared with the current power supplies (e.g., batteries and supercapacitors) that require manual intervention, thermoelectric devices promise to continuously harvest waste heat from the human body to satisfy the energy consumption of personalized healthcare platforms. Herein, this review discusses thermoelectric energy harvesting for personalized healthcare. It begins with the fundamental concepts of different thermoelectric materials, including electron thermoelectric generators (TEGs), ionic thermogalvanic cells (TGCs), and ionic thermoelectric capacitors (TECs). Then, the wearable and implantable applications of thermoelectric devices are presented. Finally, future directions of next-generation thermoelectric devices for personalized healthcare are discussed. It is hoped that developing high-performance thermoelectric devices will change the landscape of personalized healthcare in the future.
近几十年来,人们对将诊断平台小型化和分散化的研究兴趣日益浓厚,以实现持续的个性化医疗,并使患者无需长期住院。然而,缺乏可靠的便携式电源限制了个性化医疗平台的工作时间。与当前需要人工干预的电源(如电池和超级电容器)相比,热电装置有望持续从人体收集废热,以满足个性化医疗平台的能源消耗。在此,本综述讨论了用于个性化医疗的热电能量收集。它首先介绍了不同热电材料的基本概念,包括电子热电发电机(TEG)、离子热电池(TGC)和离子热电电容器(TEC)。然后,介绍了热电装置的可穿戴和可植入应用。最后,讨论了用于个性化医疗的下一代热电装置的未来发展方向。希望开发高性能热电装置将在未来改变个性化医疗的格局。