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タイトル: Boxcar型電極を用いた誘電泳動整列技術による1粒子1液滴封入の高収率化
その他のタイトル: Increase of one-to-one particle encapsulation yield using dielectrophoretic alignment technique with boxcar-type electrodes
著者: 馬淵, 研一  KAKEN_name
巽, 和也  KAKEN_name
栗山, 怜子  kyouindb  KAKEN_id  orcid https://orcid.org/0000-0003-3619-7370 (unconfirmed)
中部, 主敬  KAKEN_name
著者名の別形: MABUCHI, Kenichi
TATSUMI, Kazuya
KURIYAMA, Reiko
NAKABE, Kazuyoshi
キーワード: Particle encapsulation
Particle alignment
Dielectrophoretic force
Boxcar-type electrode
Microchannel
発行日: 2022
出版者: 日本機械学会
誌名: 日本機械学会論文集
巻: 88
号: 905
論文番号: 21-00300
抄録: We developed a technique which can increase the yield of one-to-one particle encapsulation by applying the dielectrophoretic particle alignment technique using boxcar-type electrodes. Dielectrophoretic force generated by the boxcar-type electrodes accelerate and decelerate the particles periodically as they flow in the electrode region. Further, the dielectrophoretic force is turned on and off at constant frequency. The force exerted on the particle periodically over space and time can align them in the streamwise direction with even interval. In this study, the boxcar-type electrodes were installed in the microchannel in the region upstream of the flow-focusing channel in which the water-in-oil droplets were generated. By adjusting the on-off period of the applied voltage generating the dielectrophoretic force to the period of the droplet generation, each particle could be separately encapsulated in the droplets. The principle of particle alignment using periodic force was first described based on a one-dimensional model. The flow structure and the characteristics of the droplet generation in the flow-focusing channel was then discussed in relation to the surface tension of the fluids and the wettability of the wall. We measured the velocity distribution of the particles flowing in the boxcar electrode region to evaluate the effects of the droplet generation on the motion of the particles and the alignment performance. The results showed that the particle could be aligned in the fluctuating flow caused by the droplet generation, and each particle can be encapsulated in different droplets. This was further demonstrated by measuring the probability function of the droplets containing specific number of particles, which showed that 100% yield of one-to-one particle encapsulation can be achieved under the investigated condition of particle number density of 0.4. Moreover, the throughput increased 46% compared to the case of having the particles supplied randomly.
著作権等: © 2022 一般社団法人日本機械学会
この記事はクリエイティブ・コモンズ [表示 - 非営利 - 改変禁止 4.0 国際]ライセンスの下に提供されています。
URI: http://hdl.handle.net/2433/277014
DOI(出版社版): 10.1299/transjsme.21-00300
出現コレクション:学術雑誌掲載論文等

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