Non-linearity and dynamics of low-voltage electrowetting and dewetting
Y.-J. Li, D. Echtermeyer, B. Cahill, U. Pliquett, Physical Chemistry Chemical Physics 21 (2019) 18290–18299.
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Artikel
| Veröffentlicht
| Englisch
Autor*in
Li, Ying-Jia;
Echtermeyer, Danny;
Cahill, Brian
;
Pliquett, Uwe
Abstract
As an electrically controllable wetting effect, electrowetting on dielectrics (EWOD) is applied in diverse fields including optics, display technology and lab-on-a-chip systems. For the further development of EWOD applications, the reduction of the operation voltage is an essential issue. Recently, a low-voltage EWOD system with a threshold of 2 V was developed. In its sessile drop configuration, an aqueous electrolyte droplet with microliter scaled volume is actuated on an EWOD electrode in oil. The integration of this low-voltage EWOD system into a multiparameter measurement system enables the non-linearity and dynamics of the EWOD system to be online investigated during electrowetting and dewetting. The non-linearity was characterized by the hysteresis in the droplet deformation and that in the thickness variation of an oil layer, which is entrapped between the droplet and the electrode, in the nm range. The dynamics was evaluated with the characteristic time for the droplet deformation upon voltage jumps. This study of electrowetting and dewetting focuses on the conversion efficiency of the electrical energy in the deformation processes.
Erscheinungsjahr
Zeitschriftentitel
Physical Chemistry Chemical Physics
Band
21
Zeitschriftennummer
33
Seite
18290-18299
ISSN
eISSN
FH-PUB-ID
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Li, Ying-Jia ; Echtermeyer, Danny ; Cahill, Brian ; Pliquett, Uwe: Non-linearity and dynamics of low-voltage electrowetting and dewetting. In: Physical Chemistry Chemical Physics Bd. 21, Royal Society of Chemistry (RSC) (2019), Nr. 33, S. 18290–18299
Li Y-J, Echtermeyer D, Cahill B, Pliquett U. Non-linearity and dynamics of low-voltage electrowetting and dewetting. Physical Chemistry Chemical Physics. 2019;21(33):18290-18299. doi:10.1039/C9CP02732G
Li, Y.-J., Echtermeyer, D., Cahill, B., & Pliquett, U. (2019). Non-linearity and dynamics of low-voltage electrowetting and dewetting. Physical Chemistry Chemical Physics, 21(33), 18290–18299. https://doi.org/10.1039/C9CP02732G
@article{Li_Echtermeyer_Cahill_Pliquett_2019, title={Non-linearity and dynamics of low-voltage electrowetting and dewetting}, volume={21}, DOI={10.1039/C9CP02732G}, number={33}, journal={Physical Chemistry Chemical Physics}, publisher={Royal Society of Chemistry (RSC)}, author={Li, Ying-Jia and Echtermeyer, Danny and Cahill, Brian and Pliquett, Uwe}, year={2019}, pages={18290–18299} }
Li, Ying-Jia, Danny Echtermeyer, Brian Cahill, and Uwe Pliquett. “Non-Linearity and Dynamics of Low-Voltage Electrowetting and Dewetting.” Physical Chemistry Chemical Physics 21, no. 33 (2019): 18290–99. https://doi.org/10.1039/C9CP02732G.
Y.-J. Li, D. Echtermeyer, B. Cahill, and U. Pliquett, “Non-linearity and dynamics of low-voltage electrowetting and dewetting,” Physical Chemistry Chemical Physics, vol. 21, no. 33, pp. 18290–18299, 2019.
Li, Ying-Jia, et al. “Non-Linearity and Dynamics of Low-Voltage Electrowetting and Dewetting.” Physical Chemistry Chemical Physics, vol. 21, no. 33, Royal Society of Chemistry (RSC), 2019, pp. 18290–99, doi:10.1039/C9CP02732G.