Читать книгу Surface Science and Adhesion in Cosmetics - Группа авторов - Страница 89

References

Оглавление

1. MarketsandMarkets, UV Nail Gel Market by Chemistry (Acrylate, Methacrylate, Cyanoacrylate), and Regional Analysis (Asia-Pacific, North America, Europe, and ROW) - Global Trends & Forecasts to 2020, https://www.marketsandmarkets.com/PressReleases/uv-nail-gel.asp

2. C. J. Rechel and F. Vara, UV/EB primer: Inks, coatings and adhesives, Proceedings RADTECH International North America, pp. 45-46 (1994).

3. M.J. Dvorchak and B.H. Riberi, Water-reducible, unsaturated polyesters as binders and clear coatings for UV-curable furniture coatings. J. Coatings Technol. 64(808), 43-49 (1992).

4. M.J. Dvorchak, UV curing of pigmented high-build wood coatings based on non-air-inhibited unsaturated polyesters, J. Coatings Technol. 67 (842) 49-54 (1995).

5. H.J. Traenckner and H.U. Pohl, Untersuchungen zum Trocknungsmechanismus lufttrocknender ungesättigter Polyesterharze, Angew. Makromol. Chem., 108, 61-78 (1982).

6. J. A. Arceneaux, Mitigation of oxygen inhibition in UV LED, UVA and low intensity UV cure, Proceedings RADTECH International North America Conference 2014, (2014).

7. H. Bach, C. A. Gambino, M. J. Dvorchak, T. Facke, C. Detrembleur, M. Ehlers, H. Mundstock, J. Schmitz and J. Weikard, UV refinish primer and clear coat, Proceedings RADTECH Europe Conference 2004 (2004).

8. S. A. Strazisar, H. Bach and M. J. Dvorchak, Automotive UV -A curable refinish primers and clear coats – fact or fiction ?, RADTECH Report, (Nov. 2003).

9. T.Y. Lee, C. A. Guymon, E. S. Jonsson and C.E. Hoyle, The effect of monomer structure on oxygen inhibition of (meth)acrylates photopolymerization, Polymer 45 6155-6162 (2004).

10. E.V. Sitzmann, Critical photoinitiators for UV-LED Curing: Enabling 3D printing, inks and coatings, Proceedings RADTECH UV/EB West Conference 2015 (2015).

11. One part acrylic nail formulation, WO 2017/217983 A1, assigned to Mycone Dental Supply Co., Inc. and Nail Alliance, LLC (2017).

12. C. T. Williams, K. Callen, C. A. Gambino, and M. J. Dvorchak, UV-curable polyurethane dispersions for aerospace topcoat applications, Proceedings of the International Waterborne, High-Solids, and Powder Coatings Symposium, pp. 203-211 (2012).

13. H. A. A. Guimont, C. Li, Z. Zhou, H.S. Bui and J. T. Simonnet, Latex nail compositions having low amounts of photo-initiator, US Patent 9,820,931, assigned to L’OREAL (2017).

14. A. A. Guimont, C. Li, Z. Zhou, H.S. Bui and J. T. Simonnet, Latex nail compositions having low amounts of photo-initiator, US Patent 9,649,272, assigned to L’OREAL (2017).

15. Scientific Committee on Consumer Safety (SCCS), Opinion on the safety of Trimethylbenzoyl Diphenylphosphine Oxide (TPO) in cosmetic products, 27 March 2014, Report number SCCS/1528/14.

16. J.A. Klang, J. Lu and I. Vappala, Nail polish compositions based on solvent-free aqueous polyurethane dispersions, US Patent APP2019/0343755 A1, assigned to ARKEMA France (2019).

17. F. Zareanshahraki, and V. Mannari, “Green” UV-LED gel nail polishes from bio-based materials, Intl. J. Cosmetic Sci., 40 555-564, (2018).

18. F.M. Etzler, Determination of the surface free energy of solids: A critical review, Rev. Adhesion Adhesives, 1, 3-45 (2013).

19. F.M. Etzler, Characterization of surface free energies and surface chemistry of solids, in: Contact Angle, Wettability and Adhesion, Volume 3, K.L. Mittal (Ed.) pp. 219—264, CRC Press, Boca Raton, FL (2003).

20. S. Murdan, C. Poojary, D. R. Patel, J. Fernandes, A. Haman, P.S. Saundh and Z. Sheikh, In vivo measurement of the surface energy of human fingernail plates, Intl. J.Cosmetic Sci., 34, 257-262 (2012).

21. Z. Grigale-Sorocina, M. Kalnins and K. A. Gross, Influence of monomer on structure, processing and application characteristics of UV curable urethane acrylate composite coatings, IOP Conf. Ser.:Mater. Sci. Eng. 111, 012008 (2016).

22. D. Valia and J. Ellis, Nail coatings having enhanced adhesion, US Patent 10,532,020 B2, assigned to Revlon Consumer Products Corp. (2020).

23. J. Klang, J. Lu and I. Vappala, Nail polish composition based on solvent-free aqueous polyurethane dispersions, WO2015165897 A1, assigned to ARKEMA France (2015).

24. P. M. Cook, UV-curable nail coating formulations containing cellulose esters with ethylenically unsaturated pendant groups. US Patent 5,985,951 assigned to Eastman Chemical Company (1999).

25. L.W. Steffier,K.Sheran, M. Hurt and G. Iannece, Method and composition for removing radiation-curable pigmented, artificial nail gel coatings, US Patent 9,107,857 B2 assigned to Mycone Dental Supply Co., Inc. (2014).

26. L.V. Kerai, S. Hilton and S. Murdan, UV-curable gel formulations: Potential drug carriers for the topical treatment of nail diseases, Intl. J. Pharm 492 177-190 (2015).

27. J.C. Dowdy and R. M. Sayre, Photobiological safety evaluation of UV nail lamps, Photochem. Photobiol. 89, 961-967 (2013).

28. N. Dinani and S. George, Nail cosmetics: a dermatological perspective, Clinical Experimental Dermatol. 44 599-605 (2019).

29. L. Pavlovic, The science of UV cure nail gels: A short review, Proceedings RADTECH International North America Conference 2018 (2018).

*Corresponding author: mikedipad@aol.com

Surface Science and Adhesion in Cosmetics

Подняться наверх