Electrowetting on dielectric (EWOD) of sessile microdroplets containing gold nanoparticles

Our electrowetting set-up consists of a bottom copper electrode coated with a thin insulating layer of dielectric (uncured polydimethylsiloxane) and a platinum wire upper electrode in contact with the sessile gold nanofluid droplet sitting on the dielectric layer. EWOD experiments are conducted with...

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Main Authors: Enriquez, Erwin, Guerrero, Raphael A, Patacsil, Crismar
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Published: Archīum Ateneo 2018
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Online Access:https://archium.ateneo.edu/chemistry-faculty-pubs/74
https://www.sciencedirect.com/science/article/pii/S2214785318300403
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spelling ph-ateneo-arc.chemistry-faculty-pubs-10732020-07-14T06:09:00Z Electrowetting on dielectric (EWOD) of sessile microdroplets containing gold nanoparticles Enriquez, Erwin Guerrero, Raphael A Patacsil, Crismar Our electrowetting set-up consists of a bottom copper electrode coated with a thin insulating layer of dielectric (uncured polydimethylsiloxane) and a platinum wire upper electrode in contact with the sessile gold nanofluid droplet sitting on the dielectric layer. EWOD experiments are conducted with the following concentrations of gold nanofluid (in µM): 0.5, 0.33, 0.25, 0.05, 0.01, 0.005 and control fluid. Results show enhanced electrowetting response for microdroplets containing higher concentrations of gold nanoparticles. The specific capacitance is calculated for each concentration and is found to increase with increasing concentration, in agreement with an electromechanical model for the electrowetting phenomena. 2018-01-01T08:00:00Z text https://archium.ateneo.edu/chemistry-faculty-pubs/74 https://www.sciencedirect.com/science/article/pii/S2214785318300403 Chemistry Faculty Publications Archīum Ateneo Nanotechnology Gold nanoparticles Nanofluid Electrowetting on dielectric (EWOD) Contact angle Chemistry Materials Chemistry
institution Ateneo De Manila University
building Ateneo De Manila University Library
country Philippines
collection archium.Ateneo Institutional Repository
topic Nanotechnology
Gold nanoparticles
Nanofluid
Electrowetting on dielectric (EWOD)
Contact angle
Chemistry
Materials Chemistry
spellingShingle Nanotechnology
Gold nanoparticles
Nanofluid
Electrowetting on dielectric (EWOD)
Contact angle
Chemistry
Materials Chemistry
Enriquez, Erwin
Guerrero, Raphael A
Patacsil, Crismar
Electrowetting on dielectric (EWOD) of sessile microdroplets containing gold nanoparticles
description Our electrowetting set-up consists of a bottom copper electrode coated with a thin insulating layer of dielectric (uncured polydimethylsiloxane) and a platinum wire upper electrode in contact with the sessile gold nanofluid droplet sitting on the dielectric layer. EWOD experiments are conducted with the following concentrations of gold nanofluid (in µM): 0.5, 0.33, 0.25, 0.05, 0.01, 0.005 and control fluid. Results show enhanced electrowetting response for microdroplets containing higher concentrations of gold nanoparticles. The specific capacitance is calculated for each concentration and is found to increase with increasing concentration, in agreement with an electromechanical model for the electrowetting phenomena.
format text
author Enriquez, Erwin
Guerrero, Raphael A
Patacsil, Crismar
author_facet Enriquez, Erwin
Guerrero, Raphael A
Patacsil, Crismar
author_sort Enriquez, Erwin
title Electrowetting on dielectric (EWOD) of sessile microdroplets containing gold nanoparticles
title_short Electrowetting on dielectric (EWOD) of sessile microdroplets containing gold nanoparticles
title_full Electrowetting on dielectric (EWOD) of sessile microdroplets containing gold nanoparticles
title_fullStr Electrowetting on dielectric (EWOD) of sessile microdroplets containing gold nanoparticles
title_full_unstemmed Electrowetting on dielectric (EWOD) of sessile microdroplets containing gold nanoparticles
title_sort electrowetting on dielectric (ewod) of sessile microdroplets containing gold nanoparticles
publisher Archīum Ateneo
publishDate 2018
url https://archium.ateneo.edu/chemistry-faculty-pubs/74
https://www.sciencedirect.com/science/article/pii/S2214785318300403
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