Modeling, simulation, and optimization of electrowetting-on-dielectric (EWOD) devices.


Journal

Biomicrofluidics
ISSN: 1932-1058
Titre abrégé: Biomicrofluidics
Pays: United States
ID NLM: 101293825

Informations de publication

Date de publication:
Jan 2021
Historique:
received: 16 09 2020
accepted: 12 01 2021
entrez: 11 2 2021
pubmed: 12 2 2021
medline: 12 2 2021
Statut: epublish

Résumé

With widespread research studies on electrowetting-on-dielectric (EWOD) for droplet manipulation in the field of lab-on-a-chip, how to improve the driving capability of droplets has increasingly attracted enormous interest. Aiming to decrease driving voltages and improve driving effectiveness, this paper studies the modeling, simulation, and optimization of EWOD devices. The theoretical model is refined mainly in consideration of the saturation effect of the contact angle and then verified by both simulation and experiments. As a design guide to decrease the driving voltage, a theoretical criterion of droplet splitting, the most difficult one among four basic droplet manipulations, is developed and then verified by experimental results. Moreover, a novel sigmoid electrode shape is found by the optimization method based on finite element analysis and achieves better driving effectiveness and consistent bidirectional driving capability, compared with the existing electrode shapes. Taken together, this paper provides an EWOD analysis and optimization method featuring a lower voltage and a better effectiveness and opens up opportunities for optimization designs in various EWOD-based applications.

Identifiants

pubmed: 33569090
doi: 10.1063/5.0029790
pii: 5.0029790
pmc: PMC7853767
doi:

Types de publication

Journal Article

Langues

eng

Pagination

014107

Informations de copyright

© 2021 Author(s).

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Auteurs

Classifications MeSH