Capillary filling is the key phenomenon in planar chromatography techniques such as paper chromatography and thin layer chromatography. Recent advances in micro/nanotechnologies allow the fabrication of nanoscale structures that can replace the traditional stationary phases such as paper, silica gel, alumina, or cellulose. Thus, understanding capillary filling in a nanochannel helps to advance the development of planar chromatography based on fabricated nanochannels. This paper reports an analysis of the capillary filling process in a nanochannel with consideration of electroviscous effect. In larger scale channels, where the thickness of electrical double layer (EDL) is much smaller than the characteristic length, the formation of the EDL ...
We have developed a procedure for accurate fabrication of silicon-based nanochannels down to a few n...
Due to the wide range of applications of microfluidic devices, it is important to understand the ch...
Due to the wide range of applications of microfluidic devices, it is important to understand the ch...
While capillary filling in channels of micrometers scale is experimentally verified to obey Washburn...
The recent advances in fabrication of nanoscale structures allow in-depth investigation of transport...
The capillary filling speed of water in nanochannels with a rectangular cross section and a height o...
Unsteady filling of electrolyte solution inside a nanochannel by the electrocapillarity effect is st...
Nanofluidics is the science and technology involving a fluid flowing in or around structures with a ...
We investigated the capillary filling kinetics of deionized water in nanochannels with heights of 50...
We investigated the interactions between liquid, gas, and solid phases in the capillary filling proc...
An experimental investigation of electroosmotic flow (EOF) in nanosilica particle packed capillaries...
The capillary filling speed of wetting liquids of varying viscosity and surface tension in hydrophil...
Nanoscale surface structures and channels are of intense interest for the very high surface-to-volum...
This paper describes a fundamental challenge when using silicon oxide nanochannels for analytical sy...
We have developed a procedure for accurate fabrication of silicon-based nanochannels down to a few n...
We have developed a procedure for accurate fabrication of silicon-based nanochannels down to a few n...
Due to the wide range of applications of microfluidic devices, it is important to understand the ch...
Due to the wide range of applications of microfluidic devices, it is important to understand the ch...
While capillary filling in channels of micrometers scale is experimentally verified to obey Washburn...
The recent advances in fabrication of nanoscale structures allow in-depth investigation of transport...
The capillary filling speed of water in nanochannels with a rectangular cross section and a height o...
Unsteady filling of electrolyte solution inside a nanochannel by the electrocapillarity effect is st...
Nanofluidics is the science and technology involving a fluid flowing in or around structures with a ...
We investigated the capillary filling kinetics of deionized water in nanochannels with heights of 50...
We investigated the interactions between liquid, gas, and solid phases in the capillary filling proc...
An experimental investigation of electroosmotic flow (EOF) in nanosilica particle packed capillaries...
The capillary filling speed of wetting liquids of varying viscosity and surface tension in hydrophil...
Nanoscale surface structures and channels are of intense interest for the very high surface-to-volum...
This paper describes a fundamental challenge when using silicon oxide nanochannels for analytical sy...
We have developed a procedure for accurate fabrication of silicon-based nanochannels down to a few n...
We have developed a procedure for accurate fabrication of silicon-based nanochannels down to a few n...
Due to the wide range of applications of microfluidic devices, it is important to understand the ch...
Due to the wide range of applications of microfluidic devices, it is important to understand the ch...