The escalation of zeta potential by the influence of wall slip for the electrokinetically modulated flow through a microchannel motivates to consider the impact of hydrodynamic slippage upon the zeta or surface potent...
The authors gratefully acknowledge the support of the National Natural Science Foundation of China(No.51775507);the Natural Science Foundation of Zhejiang Province(No.LY19E050006).
The process of lubricant penetration into frictional interfaces has not been fully established,hence compromising their tribological performance.In this study,the penetration characteristics of deionized water(DI wate...
Project supported by the National Natural Science Foundation of China(Grant No.11572139).
Dielectrophoresis(DEP)technology has become important application of microfluidic technology to manipulate particles.By using a local modulating electric field to control the combination of electroosmotic microvortice...
Project supported by the National Natural Science Foundation of China(No.11572139)。
The dielectrophoretic technology has been one of the most frequently applied microfluidic technologies to manipulate particles.The way of a combination of controlled electroosmotic micro-vortices and dielectrophoresis...
The impact of Joule heating due to electric double layer(EDL)and viscous dissipation on electroosmotic mixed convection flow in a vertical microchannel with asymmetric heat fluxes is established in this article.The P...
supported by The Science and Technology Research Project of Hebei Province Higher Education(QN2018230);Doctoral Fund of Yanshan University(B989).
Electroosmosis is an effective method for liquid mixing.It is associated with the motion of a liquid in a microchannel induced by an applied electric field.In this manuscript,a numerical model is elaborated and implem...
Supported by the National Natural Science Foundation of China under Grant Nos.11772162 and 11472140;the Natural Science Foundation of Inner Mongolia Autonomous Region of China under Grant Nos.2016MS0106 and 2018MS01015;the Inner Mongolia Grassland Talent under Grant No.12000-12102013;the Research Program of science and technology at Universities of Inner Mongolia Autonomous Region under Grant No.NJZY18006
This paper investigates the magnetohydrodynamic(MHD) electroosmotic flow(EOF) of Newtonian fluid through a zeta potential modulated parallel plate microchannel with patterned hydrodynamic slippage. The driven mechanis...
Project supported by the National Natural Science Foundation of China(Nos.11772162 and11472140);the Inner Mongolia Autonomous Region Grassland Talent(No.12000-12102013);the Natural Science Foundation of Inner Mongolia Autonomous Region of China(No.2016MS0106)
We present a theoretical investigation of rotating electroosmotic flows(EOFs) in soft parallel plate microchannels. The soft microchannel, also called as the polyelectrolyte-grafted microchannel, is denoted as a rigid...
Project supported by the National Natural Science Foundation of China(No.11572139)
A field-modulated electroosmotic flow (FMEOF) in a microchannel can be obtained by applying modulating electric fields in a direction perpendicular to the channel wall. Micro-vortexes are generated around the electr...
supported by the National Natural Science Foundation of China(No.61265006);the China Scholarship Council,and the Graduate School of Biomedical Engineering in Tohoku University
An on-chip electroosmotic(EO) micropump(EOP) was integrated in a microfluidic channel combined with a light-addressable potentiometric sensor(LAPS). The movement of EO flow towards right and left directions can be cle...