Key Laboratory of Bioinspired Smart Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.
University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.
ACS Nano. 2020 Oct 27;14(10):12614-12620. doi: 10.1021/acsnano.0c05156. Epub 2020 Sep 1.
The design of an intelligent nanofluidic system for regulating the transport of substances such as ions and molecules is significant for applications in biological sensing, drug delivery, and energy harvesting. However, the existing nanofluidic system faces challenges in terms of an uncontrollable transport speed for molecules and ions and also a complex preparation processes, low durability, and slow response rate. Herein, we demonstrate the use of a bioinspired ferrofluid-based nanofluid that can facilitate multilevel ultrafast-responsive ion and molecule transport with speed control. Specifically, we reversibly deform bulk ferrofluids using a magnet and wet/dewet the outer surface of superhydrophilic nanochannels for building a smart transport system. By changing the direction and strength of the external magnetic field, a speed control, ultrafast-responsive molecular transport (<0.1 s), and controlled current gating ratio are achieved owing to the different pattern changes of ferrofluids on the outer surface of nanochannels. We also illustrate a practical application of this strategy for antibacterial devices to control the transport of drug molecules in a programmed manner. These results suggest that molecule transport can be further complexified and quantified through an intelligent nanofluidic system.
设计用于调节物质(如离子和分子)传输的智能纳流控系统对于生物传感、药物输送和能量收集等应用具有重要意义。然而,现有的纳流控系统在分子和离子的不可控传输速度方面面临挑战,同时还存在制备工艺复杂、耐久性低以及响应速度慢等问题。在此,我们展示了一种基于仿生铁磁流体的纳流控,它可以促进多级超快响应离子和分子传输,并实现速度控制。具体而言,我们使用磁场可逆地变形体相铁磁流体,并湿/干超亲水纳米通道的外表面,以构建智能传输系统。通过改变外部磁场的方向和强度,可以实现速度控制、超快响应分子传输(<0.1 s)以及受控的电流门控比,这归因于纳米通道外表面上铁磁流体的不同图案变化。我们还说明了这种策略在抗菌装置中的实际应用,以程序化方式控制药物分子的传输。这些结果表明,通过智能纳流控系统可以进一步复杂化和量化分子传输。