Electroosmotic pumps and their applications in microfluidic systems

X Wang, C Cheng, S Wang, S Liu - Microfluidics and nanofluidics, 2009 - Springer
Electroosmotic pumping is receiving increasing attention in recent years owing to the rapid
development in micro total analytical systems. Compared with other micropumps …

Electric field driven pumping in microfluidic device

MR Hossan, D Dutta, N Islam, P Dutta - Electrophoresis, 2018 - Wiley Online Library
Pumping of fluids with precise control is one of the key components in a microfluidic device.
The electric field has been used as one of the most popular and efficient nonmechanical …

Steady and unsteady flow analysis in microdiffusers and micropumps: a critical review

M Nabavi - Microfluidics and nanofluidics, 2009 - Springer
In recent research, there has been a growing interest in the analysis of flow through
microdiffusers and micropumps in order to characterize and optimize the performance of …

A rotating permanent magnetic actuator for micropumping devices with magnetic nanofluids

S Doganay, L Cetin, MA Ezan… - … of Micromechanics and …, 2020 - iopscience.iop.org
In this study, a novel rotating permanent magnetic actuator (PMA) system is proposed to
manipulate magnetic nanofluids to pump chemicals inside micro-sized channels with …

A low-power CMOS microfluidic pump based on travelling-wave electroosmosis for diluted serum pumping

PW Yen, SC Lin, YC Huang, YJ Huang, YC Tung… - Scientific reports, 2019 - nature.com
Microfluidic pump is an essential component in lab-on-chip applications. It is of importance
to develop an active microfluidic pump with low-power and low-cost characteristics for …

A high flow rate thermal bubble-driven micropump with induction heating

B Liu, J Sun, D Li, J Zhe, KW Oh - Microfluidics and Nanofluidics, 2016 - Springer
A thermal bubble-driven micropump with magnetic induction heating is successfully
demonstrated in this paper. Energy is transferred from the planar coil outside the …

Microfluidic system with integrated electroosmotic pumps, concentration gradient generator and fish cell line (RTgill-W1)—towards water toxicity testing

T Glawdel, C Elbuken, LEJ Lee, CL Ren - Lab on a Chip, 2009 - pubs.rsc.org
This study presents a microfluidic system that incorporates electroosmotic pumps, a
concentration gradient generator and a fish cell line (rainbow trout gill) to perform toxicity …

BioMEMS devices for drug delivery

EE Nuxoll, RA Siegel - IEEE engineering in medicine and …, 2009 - ieeexplore.ieee.org
Successful therapeutic outcomes following the administration of drugs, including small
molecules and large biomolecules, require not only the selection of a proper drug but also …

[图书][B] Labs on chip: Principles, design and technology

E Iannone - 2018 - taylorfrancis.com
Labs on Chip: Principles, Design and Technology provides a complete reference for the
complex field of labs on chip in biotechnology. Merging three main areas—fluid dynamics …

Output pressure and efficiency of electrokinetic pumping of non-Newtonian fluids

CLA Berli - Microfluidics and Nanofluidics, 2010 - Springer
Theoretical expressions of the flow rate, output pressure and thermodynamic efficiency of
electrokinetic pumping of non-Newtonian fluids through cylindrical and slit microchannels …