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Rotating electroosmotic flows in soft parallel plate microchannels 被引量:1

Rotating electroosmotic flows in soft parallel plate microchannels
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摘要 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 microchannel coated with a polyelectrolyte layer(PEL) on its surface. We compare the velocity in a soft microchannel with that in a rigid one for different rotating frequencies and find that the PEL has a trend to lower the velocities in both directions for a larger equivalent electrical double layer(EDL) thickness λFCL(λFCL = 0.3) and a smaller rotating frequency ω(ω < 5).However, for a larger rotating frequency ω(ω = 5), the main stream velocity u far away from the channel walls in a soft microchannel exceeds that in a rigid one. Inspired by the above results, we can control the EOF velocity in micro rotating systems by imparting PELs on the microchannel walls, which may be an interesting application in biomedical separation and chemical reaction. 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 microchannel coated with a polyelectrolyte layer(PEL) on its surface. We compare the velocity in a soft microchannel with that in a rigid one for different rotating frequencies and find that the PEL has a trend to lower the velocities in both directions for a larger equivalent electrical double layer(EDL) thickness λFCL(λFCL = 0.3) and a smaller rotating frequency ω(ω < 5).However, for a larger rotating frequency ω(ω = 5), the main stream velocity u far away from the channel walls in a soft microchannel exceeds that in a rigid one. Inspired by the above results, we can control the EOF velocity in micro rotating systems by imparting PELs on the microchannel walls, which may be an interesting application in biomedical separation and chemical reaction.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2019年第7期1017-1028,共12页 应用数学和力学(英文版)
基金 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)
关键词 ROTATING ELECTROOSMOTIC flow (EOF) SOFT microchannel POLYELECTROLYTE layer (PEL) thickness rotating electroosmotic flow(EOF) soft microchannel polyelectrolyte layer(PEL) thickness
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