Yeon Song Yi, Yun Jeongse, Yoon Sun-Heui, Lee Dahye, Jang Woohyuk, Han Seok Hee, Kang Chung Mu, Chung Taek Dong
Department of Chemistry , Seoul National University , Seoul , 08826 , Republic of Korea . Email:
Advanced Institute of Convergence Technology , Suwon-si , Gyeonggi-do 16229 , Republic of Korea.
Chem Sci. 2018 Aug 27;9(42):8071-8076. doi: 10.1039/c8sc02954g. eCollection 2018 Nov 14.
A novel pump-free miniaturized reverse electrodialysis (RED) system was designed to provide lasting power transduced from salinity gradients, named solid salt RED (ssRED), and this quasi-battery uses a solid salt instead of electrolyte solution for streamlined usage. It is portable, flexible, comparable in size to a universal serial bus flash drive, and easily activated with a small amount of water. It maintains a constant ionic concentration gradient through precipitation reactions between a pair of different salts. This precipitation-assisted solid salt RED (PssRED) is an unprecedented ionic power source as it can generate steady electricity in the absence of a driving pump. The PssRED was successfully coupled with bipolar electrode (BPE) microchip sensors which require stable ionic electricity and a polyelectrolyte ionic diode to realize a fully ionic circuit. It is envisioned that the range of application could be expanded to supply electromotive force to various devices through an ionic charge flow.
一种新型无泵小型化反向电渗析(RED)系统被设计用于提供由盐度梯度转换而来的持久电力,名为固体盐RED(ssRED),这种类似电池的装置使用固体盐而非电解质溶液,以实现简化使用。它便于携带、灵活,尺寸与通用串行总线闪存驱动器相当,并且用少量水就能轻松激活。它通过一对不同盐之间的沉淀反应维持恒定的离子浓度梯度。这种沉淀辅助固体盐RED(PssRED)是一种前所未有的离子电源,因为它在没有驱动泵的情况下也能产生稳定的电力。PssRED成功地与需要稳定离子电流的双极电极(BPE)微芯片传感器和聚电解质离子二极管耦合,以实现完全离子电路。可以设想,其应用范围能够扩展,通过离子电荷流为各种设备提供电动势。