论文标题
Angstrofluidics:步行到极限
Angstrofluidics: walking to the limit
论文作者
论文摘要
Angstrom尺度的流体通道本质上是普遍存在的,并且在调节细胞流量,信号传导和对刺激的反应中起着重要作用。现在,随着几种尖端的自下而上和自上而下的制造方法的出现,合成通道是现实。特别是,使用原子上薄的二维(2D)材料和纳米管作为建造流体管道的组件,已将制造的限制推向了Angstrom尺度。在这里,我们概述了纳米和Angstrofluidic通道制造方法的最新发展,同时根据维度(0D孔,1D管,2D缝隙)对它们进行分类,以及最新的测量技术进步。我们讨论了这些通道中各种刺激控制的离子运输,并比较了离子迁移率,流和渗透力的比较,在所有维度上,孔径各不相同。在审查结束时,我们重点介绍了智能离子设备开发的独特未来机会。
Angstrom-scale fluidic channels are ubiquitous in nature, and play an important role in regulating cellular traffic, signaling, and responding to stimuli. Synthetic channels are now a reality with the emergence of several cutting-edge bottom-up and top-down fabrication methods. In particular, the use of atomically thin two dimensional (2D) materials and nanotubes as components to build fluidic conduits has pushed the limits of fabrication to the Angstrom-scale. Here, we provide an overview of the recent developments in the fabrication methods for nano- and angstrofluidic channels while categorizing them on the basis of dimensionality (0D pores, 1D tubes, 2D slits), along with the latest advances in measurement techniques. We discuss the ionic transport governed by various stimuli in these channels and draw comparison of ionic mobility, streaming and osmotic power, with varying pore sizes across all the dimensionalities. Towards the end of the review, we highlight the unique future opportunities in the development of smart ionic devices.