Innovative Coatings Based on Peppermint Essential Oil on Titanium and Steel Substrates: Chemical and Mechanical Protection Ability
Abstract
:1. Introduction
2. Materials and Methods
3. Results
3.1. Coating Preparation and Visual Appearance
3.2. Fluorescence Microscopy
3.3. FTIR Spectroscopy
3.4. Contact Angle Measurements
3.5. Tape Adhesion Test
3.6. Scratch Test
4. Discussion
5. Conclusions
Author Contributions
Funding
Conflicts of Interest
References
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Sample Name | Material | Surface Finishing | Coating | Ageing | Characterizations |
---|---|---|---|---|---|
Ti64-MP | Ti6Al4V | Mechanical Polishing | — | — | Fluorescence |
Ti64-CT | Ti6Al4V | Chemical Treatment (nanotexture) | — | — | Fluorescence, SEM, contact angle |
Ti64-MP-C | Ti6Al4V | Mechanical Polishing | Mentha EO | — | Fluorescence, FTIR, Tape |
Ti64-CT-C | Ti6Al4V | Chemical Treatment (nanotexture) | Mentha EO | — | Fluorescence, SEM, FTIR, contact angle, Tape |
Ti64-MP-C-3 h/7 h/3 d/7 d | Ti6Al4V | Mechanical Polishing | Mentha EO | 3 h/7 h/3 d/7 d water soaking | Fluorescence (7 d), FTIR, Tape |
Ti64-CT-C-3 h/7 h /3 d/7 d | Ti6Al4V | Chemical Treatment (nanotexture) | Mentha EO | 3 h/7 h/3 d/7 d water soaking | Fluorescence (7 d), FTIR, contact angle, tape |
AISI316L-MP | AISI316LVM | Mechanical Polishing | — | — | Fluorescence |
AISI316L-MG | AISI316LVM | Mechanical Grinding (SiC paper #400) | — | — | Fluorescence, SEM, scratch |
AISI316L-MP-C | AISI316LVM | Mechanical Polishing | Mentha EO | — | Fluorescence, FTIR, Tape |
AISI316L-MG-C | AISI316LVM | Mechanical Grinding (SiC paper #400) | Mentha EO | — | Fluorescence, SEM, Tape, scratch |
AISI316L-MP-C-3 h/7 h/3 d/7 d | AISI316LVM | Mechanical Polishing | Mentha EO | 3 h/7 h/3 d/7 d water soaking | Fluorescence (7 d), FTIR |
AISI316L-MG-C-3 h/7 h/3 d/7 d | AISI316LVM | Mechanical Grinding (SiC paper #400) | Mentha EO | 3 h/7 h/3 d/7 d water soaking | Fluorescence (7 d), Tape |
AISI316L-MP-C-H2SO4/NaOH/deg | AISI316LVM | Mechanical Polishing | Mentha EO | H2SO4/NaOH/degreaser washing | FTIR, Tape |
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Cazzola, M.; Ferraris, S.; Banche, G.; Gautier Di Confiengo, G.; Geobaldo, F.; Novara, C.; Spriano, S. Innovative Coatings Based on Peppermint Essential Oil on Titanium and Steel Substrates: Chemical and Mechanical Protection Ability. Materials 2020, 13, 516. https://doi.org/10.3390/ma13030516
Cazzola M, Ferraris S, Banche G, Gautier Di Confiengo G, Geobaldo F, Novara C, Spriano S. Innovative Coatings Based on Peppermint Essential Oil on Titanium and Steel Substrates: Chemical and Mechanical Protection Ability. Materials. 2020; 13(3):516. https://doi.org/10.3390/ma13030516
Chicago/Turabian StyleCazzola, Martina, Sara Ferraris, Giuliana Banche, Giovanna Gautier Di Confiengo, Francesco Geobaldo, Chiara Novara, and Silvia Spriano. 2020. "Innovative Coatings Based on Peppermint Essential Oil on Titanium and Steel Substrates: Chemical and Mechanical Protection Ability" Materials 13, no. 3: 516. https://doi.org/10.3390/ma13030516
APA StyleCazzola, M., Ferraris, S., Banche, G., Gautier Di Confiengo, G., Geobaldo, F., Novara, C., & Spriano, S. (2020). Innovative Coatings Based on Peppermint Essential Oil on Titanium and Steel Substrates: Chemical and Mechanical Protection Ability. Materials, 13(3), 516. https://doi.org/10.3390/ma13030516