Deposition and Morphology of Direct Current Plasma-Polymerized Aniline
Plasma polymerization is a simple, solvent-free, dry process that involves vaporizing a monomer and ionizing them to the plasma state. This study reports the plasma polymerization of aniline in a direct current glow discharge. Aniline was introduced into a vacuum chamber and plasma-polymerized onto...
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Archīum Ateneo
2023
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ph-ateneo-arc.chemistry-faculty-pubs-12022024-02-19T08:07:44Z Deposition and Morphology of Direct Current Plasma-Polymerized Aniline Palardonio, Sidney M Vasquez, Magdaleno R. Plasma polymerization is a simple, solvent-free, dry process that involves vaporizing a monomer and ionizing them to the plasma state. This study reports the plasma polymerization of aniline in a direct current glow discharge. Aniline was introduced into a vacuum chamber and plasma-polymerized onto an indium-doped tin oxide/glass substrate at varying discharge potentials and deposition times. The resulting plasma-polymerized aniline films were in the leucoemeraldine form, as evidenced by UV-Vis and infrared spectral analyses. Monocarbon species that are products of the aromatic ring rupture were observed from the optical emission spectra of the discharge. The films reveal a smooth, pinhole-free surface across different process parameters. The film thickness from the 200 to 600 nm range presents a linear relationship with respect to the duration of deposition. The deposition rate also increased and has a good linear relationship when the discharge potential was varied. 2023-05-01T07:00:00Z text https://archium.ateneo.edu/chemistry-faculty-pubs/202 https://doi.org/10.1116/6.0002497 Chemistry Faculty Publications Archīum Ateneo Chemistry |
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Chemistry Palardonio, Sidney M Vasquez, Magdaleno R. Deposition and Morphology of Direct Current Plasma-Polymerized Aniline |
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Plasma polymerization is a simple, solvent-free, dry process that involves vaporizing a monomer and ionizing them to the plasma state. This study reports the plasma polymerization of aniline in a direct current glow discharge. Aniline was introduced into a vacuum chamber and plasma-polymerized onto an indium-doped tin oxide/glass substrate at varying discharge potentials and deposition times. The resulting plasma-polymerized aniline films were in the leucoemeraldine form, as evidenced by UV-Vis and infrared spectral analyses. Monocarbon species that are products of the aromatic ring rupture were observed from the optical emission spectra of the discharge. The films reveal a smooth, pinhole-free surface across different process parameters. The film thickness from the 200 to 600 nm range presents a linear relationship with respect to the duration of deposition. The deposition rate also increased and has a good linear relationship when the discharge potential was varied. |
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text |
author |
Palardonio, Sidney M Vasquez, Magdaleno R. |
author_facet |
Palardonio, Sidney M Vasquez, Magdaleno R. |
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Palardonio, Sidney M |
title |
Deposition and Morphology of Direct Current Plasma-Polymerized Aniline |
title_short |
Deposition and Morphology of Direct Current Plasma-Polymerized Aniline |
title_full |
Deposition and Morphology of Direct Current Plasma-Polymerized Aniline |
title_fullStr |
Deposition and Morphology of Direct Current Plasma-Polymerized Aniline |
title_full_unstemmed |
Deposition and Morphology of Direct Current Plasma-Polymerized Aniline |
title_sort |
deposition and morphology of direct current plasma-polymerized aniline |
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Archīum Ateneo |
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2023 |
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https://archium.ateneo.edu/chemistry-faculty-pubs/202 https://doi.org/10.1116/6.0002497 |
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