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Captive-air-bubble aerophobicity measurements of antibiofouling coatings for underwater MEMS devices

Massimo Mariello et al · SAGE Publishing · 2019

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In this article, we report the measurement of underwater aerophobicity, through the captive-bubble method, for different polymeric coatings employed to protect microscale and nanoscale flexible electronic devices for seawater applications. Controlling the morphology and wettability of the coating, in particular with the incorporation of nanoparticles of fluorinated polymers, allows to adjust the hydrophilic/hydrophobic (aerophobic/aerophilic) character of the surface in order to achieve a more insulating and antibiofouling behavior. Morphological analysis (roughness) and wettability measurements in sessile-drop and captive-bubble methods were provided for some properly selected polymeric coatings. We found that parylene C decorated with poly(vinylidene fluoride) nanoparticles at a higher dispersion concentration (5 mg/mL) exhibits the best compromise between morphology, hydrophobicity, and underwater aerophobicity, with sessile-drop water contact angle of 95.1 ± 2.9° and captive-air-bubble contact angle of 133.1 ± 5.9°.

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APA 7

al, M. M. E. (2019). Captive-air-bubble aerophobicity measurements of antibiofouling coatings for underwater MEMS devices. https://doi.org/10.1177/1847980419862075

MLA

al, Massimo Mariello et. "Captive-air-bubble aerophobicity measurements of antibiofouling coatings for underwater MEMS devices." 2019. https://doi.org/10.1177/1847980419862075.

Chicago

al, Massimo Mariello et. 2019. "Captive-air-bubble aerophobicity measurements of antibiofouling coatings for underwater MEMS devices.". https://doi.org/10.1177/1847980419862075.

Harvard

al, M. M. E. 2019, Captive-air-bubble aerophobicity measurements of antibiofouling coatings for underwater MEMS devices, SAGE Publishing, available at: https://doi.org/10.1177/1847980419862075 [Accessed 28 Jun. 2026].

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Título
Captive-air-bubble aerophobicity measurements of antibiofouling coatings for underwater MEMS devices
Autor / colaboradores
Massimo Mariello et al
Editorial
SAGE Publishing
Año de publicación
2019
ISSN
1847-9804
ISSN
1847-9804
Idioma
eng
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