Electrohydrodynamic Conduction Pump with Asymmetrical Electrode Structures in the Microchannels
Author(s) -
Tasuku Sato,
Yoko Yamanishi,
Vito Cacucciolo,
Yu Kuwajima,
Hiroki Shigemune,
Matteo Cianchetti,
Cecilia Laschi,
Shingo Maeda
Publication year - 2017
Publication title -
chemistry letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.492
H-Index - 114
eISSN - 1348-0715
pISSN - 0366-7022
DOI - 10.1246/cl.170217
Subject(s) - electrohydrodynamics , chemistry , electrode , mechanics , thermal conduction , thermodynamics , physics
In this study, we have developed a microfluidic pump that utilizes the electrohydrodynamic (EHD) conduction of a working fluid. Ring-shaped pumps have been used in previous studies on EHD conduction, but these require a three-dimensional arrangement of electrode pairs, which makes it difficult to downsize the apparatus. Here, we propose a mechanism to achieve one-way fluid flow in the microchannels by arranging non-parallel electrodes in a plane to generate an asymmetric electric field. One advantage of this design is that it can be easily and precisely fabricated using microelectromechanical system (MEMS) processing techniques: this has allowed us to integrate a micropump and a microchannel into a single device. Moreover, the pressure generated by the pump is induced solely by electrochemical reactions; since mechanical components such as gears are not required, this helps reduce the noise generated by the device
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