Feng Huicheng, Chang Honglong, Zhong Xin, Wong Teck Neng
Unmanned System Research Institute, Northwestern Polytechnical University, Xi'an 710072, China; MOE Key Laboratory of Micro and Nano Systems for Aerospace, Northwestern Polytechnical University, Xi'an 710072, China; Yangtze River Delta Research Institute of Northwestern Polytechnical University, Taicang 215400, China.
MOE Key Laboratory of Micro and Nano Systems for Aerospace, Northwestern Polytechnical University, Xi'an 710072, China.
Adv Colloid Interface Sci. 2020 Jun;280:102159. doi: 10.1016/j.cis.2020.102159. Epub 2020 Apr 19.
Induced-charge electrokinetics (ICEK) remains a hot topic due to its promising applications in micro- and nano-fluidics. Over the past decade, researchers have made a great advancement in both fundamental studies and application developments. They captured (I) a flow reversal in induced-charge electroosmosis (ICEO) and attributed it to the phase delay effect of ions, (II) a chaotic ICEO and attributed it to the concentration polarization in the bulk solution, (III) a non-quadratic correlation for ICEO of non-Newtonian fluids and attributed it to the power-law viscosity, (IV) an induced-charge electrophoretic (ICEP) rotation of Janus doublets, etc. Furthermore, various ICEK-based micro- and nano-fluidic devices have been developed, namely, micropumps, particle focusers, trappers, sorters, and nanopore ion diodes. The present article provides a comprehensive review on the recent advancement of ICEK. Firstly, the fundamental studies of ICEK are introduced; then the micro- and nano-fluidic applications based on ICEK are presented; lastly, promising future directions for both fundamental and applications are discussed. This review presents the basic framework of ICEK, and can facilitate the development of ICEK-based applications.
感应电荷电动学(ICEK)因其在微纳流体领域的广阔应用前景,仍然是一个热门话题。在过去十年中,研究人员在基础研究和应用开发方面都取得了重大进展。他们发现了(I)感应电荷电渗(ICEO)中的流动反转现象,并将其归因于离子的相位延迟效应;(II)混沌ICEO现象,并将其归因于本体溶液中的浓度极化;(III)非牛顿流体ICEO的非二次相关性,并将其归因于幂律粘度;(IV)Janus双联体的感应电荷电泳(ICEP)旋转等。此外,还开发了各种基于ICEK的微纳流体器件,即微泵、粒子聚焦器、捕获器、分选器和纳米孔离子二极管。本文对ICEK的最新进展进行了全面综述。首先,介绍了ICEK的基础研究;然后,展示了基于ICEK的微纳流体应用;最后,讨论了基础研究和应用的未来发展方向。本综述介绍了ICEK的基本框架,有助于推动基于ICEK的应用发展。