School of Chemical Engineering and Materials Science, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul, 06974, Republic of Korea.
School of Electrical and Electronics Engineering, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul, 06974, Republic of Korea.
Adv Mater. 2023 May;35(20):e2300197. doi: 10.1002/adma.202300197. Epub 2023 Mar 27.
Radio frequency energy harvesting (RFEH) systems have emerged as a critical component for powering devices and replacing traditional batteries, with paper being one of the most promising substrates for use in flexible RFEH systems. However, previous paper-based electronics with optimized porosity, surface roughness, and hygroscopicity still face limitations in terms of the development of integrated foldable RFEH systems within a single sheet of paper. In the present study, a novel wax-printing control and water-based solution process are used to realize an integrated foldable RFEH system within a single sheet of paper. The proposed paper-based device includes vertically layered foldable metal electrodes, a via-hole, and stable conductive patterns with a sheet resistance of less than 1 Ω sq . The proposed RFEH system exhibits an RF/DC conversion efficiency of 60% and an operating voltage of 2.1 V in 100 s at a distance of 50 mm and a transmitted power of 50 mW. The integrated RFEH system also demonstrates stable foldability, with RFEH performance maintained up to a folding angle of 150°. The single-sheet paper-based RFEH system thus has the potential for use in practical applications associated with the remote powering of wearable and Internet-of-Things devices and in paper electronics.
射频能量收集 (RFEH) 系统已成为为设备供电和替代传统电池的关键组成部分,纸是用于柔性 RFEH 系统的最有前途的基板之一。然而,以前具有优化的多孔性、表面粗糙度和吸湿性的基于纸张的电子产品在单个纸张内开发集成可折叠 RFEH 系统方面仍存在局限性。在本研究中,使用新型蜡印控制和基于水的溶液处理工艺在单个纸张内实现了集成可折叠 RFEH 系统。所提出的基于纸张的设备包括垂直分层的可折叠金属电极、过孔和具有小于 1 Ω/sq 的电阻的稳定导电图案。所提出的 RFEH 系统在 50mm 的距离和 50mW 的发射功率下,在 100s 内表现出 60%的射频/直流转换效率和 2.1V 的工作电压。集成的 RFEH 系统还表现出稳定的可折叠性,RFEH 性能可保持在 150°的折叠角度。因此,基于单张纸的 RFEH 系统有可能用于与可穿戴设备和物联网设备的远程供电以及纸张电子产品相关的实际应用。