School of Materials and Metallurgy , Guizhou University , Guiyang 550025 , China.
National Center for Nanoscience and Technology , No. 11 Beiyitiao, Zhongguancun , Beijing 100190 , China.
ACS Appl Mater Interfaces. 2018 Dec 26;10(51):44915-44923. doi: 10.1021/acsami.8b17719. Epub 2018 Dec 13.
Two-dimensional (2D) nanochannel arrays are constructed by bottom-up reassembly of montmorillonite monolayers that are obtained by liquid-phase exfoliation of its layered crystals, and the as-constructed interstitial space between these monolayers is uniform and provides ions with nanoscale transport channels. Surface-charge-controlled ion transport behavior is observed through these nanochannels as the electrolyte concentration reduces to 10 M at room temperature. Furthermore, the nanochannel structure remains even after 400 °C heat treatment, and nanofluidic devices based on the annealed nanochannel arrays still exhibit surface-charge-governed ion transport at low electrolyte concentrations. In addition, a drift-diffusion experiment is conducted to investigate the mobility ratio of cations/anions through the nanochannels with asymmetric bulk electrolyte concentrations, and the results show that the mobility of cations is about eight to nine times that of anions, which is consistent with the fact that the montmorillonite monolayers are negatively charged and the nanochannels are permselective. Last, ionic current rectification is observed in the nanofluidic system of asymmetric geometric shape, and rectification factors of ∼2.6 and ∼3.5 can be obtained in KCl and HCl electrolytes, respectively, at a bias between -1 and +1 V because of the asymmetric electrostatic potential through the nanochannels.
二维(2D)纳米通道阵列是通过自下而上的蒙脱石单层组装而成的,蒙脱石单层是通过其层状晶体的液相剥离获得的,这些单层之间的间隙空间均匀,为离子提供了纳米级的传输通道。通过这些纳米通道观察到表面电荷控制的离子输运行为,当电解质浓度在室温下降低到 10 M 时。此外,纳米通道结构即使在 400°C 的热处理后仍然存在,并且基于退火纳米通道阵列的纳流控器件仍然在低电解质浓度下表现出表面电荷控制的离子输运。此外,通过具有不对称体相电解质浓度的纳米通道进行漂移扩散实验来研究阳离子/阴离子的迁移率,结果表明阳离子的迁移率约为阴离子的八到九倍,这与蒙脱石单层带负电荷和纳米通道具有选择性的事实一致。最后,在不对称几何形状的纳流控体系中观察到离子电流整流,在 KCl 和 HCl 电解质中,在-1 和+1 V 之间的偏压下可以得到约 2.6 和 3.5 的整流因子,这是由于纳米通道中的不对称静电势引起的。