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Original Articles

Influence of polymerizable surfactants on the adhesion performance and water resistance of water-based acrylic pressure-sensitive adhesives (PSAs)

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Pages 1770-1788 | Received 07 Mar 2022, Accepted 23 Jun 2022, Published online: 07 Jul 2022

References

  • Rajaram S. Adhesives and adhesive applications: technologies and global markets. Wellesley (MA): BCC Research; 2013. ISBN 1569655219.
  • Penzel E, Ballard N, Asua JM. Polyacrylates. Ullmann’s Encycl Ind Chem. 2018;A21:1–20.
  • Keddie JL, Routh AF. Surfactant distribution in latex films. In Keddie JL, Routh AF, editors. Fundamentals of latex film formation. Process and properties. Bristol: Springer Laboratory; 2010. p. 185–212. ISBN 9789048128440.
  • Yang YK, Li H, Wang F. Studies on the water resistance of acrylic emulsion pressure-sensitive adhesives (PSAs). J Adhes Sci Technol. 2003;17(13):1741–1750.
  • Mulvihill J, Toussaint A, Wilde M. Onset, follow up and assessment of coalescence. Prog Org Coatings. 1997;30(3):127–139.
  • Kientz E, Charmeau JY, Holl Y, et al. Adhesion of latex films. J Adhes Sci Technol. 1996;10(8):745–759.
  • Zosel A, Schuler B. Influence of surfactants on the peel strength of water-based pressure sensitive adhesives. J Adhes. 1999;70(1–2):179–195.
  • Charmeau JY, Berthet R, Gringreau C, et al. Effects of film structure on mechanical and adhesion properties of latex films. Int J Adhes Adhes. 1997;17(2):169–176.
  • Tobing SD, Klein A. Molecular parameters and their relation to the adhesive performance of emulsion acrylic pressure‐sensitive adhesives. II. Effect of crosslinking. J Appl Polym Sci. 2001;79(14):2558–2564.
  • Donkus LJ. Solvent-like performance from emulsion PSAs: advances in water-whitening resistance. Adhes Age. 1997;32:35–37.
  • Greene BW, Sheetz DP. In situ polymerization of Surface-Active agents on latex particles: II. The mechanical stability of styrene/butadiene latexes. J Colloid Interface Sci. 1970;32(1):96–105.
  • Greene BW, Saunders FL. In situ polymerization of surface-active agents on latex particles: III. The electrolyte stability of styrene/butadiene latexes. J Colloid Interface Sci. 1970;33(3):393–404.
  • Aramendia E, Mallégol J, Jeynes C, et al. Distribution of surfactants near acrylic latex film surfaces: a comparison of conventional and reactive surfactants (surfmers). Langmuir. 2003;19(8):3212–3221.
  • Belaroui F, Hirn MP, Grohens Y, et al. Distribution of water-soluble and surface-active low-molecular-weight species in acrylic latex films. J Colloid Interface Sci. 2003;261(2):336–348.
  • Mallégol J, Gorce JP, Dupont O, et al. Origins and effects of a surfactant excess near the surface of waterborne acrylic pressure-sensitive adhesives. Langmuir. 2002;18(11):4478–4487.
  • Mariz I, de FA, de la Cal JC, et al. Unimodal particle size distribution latexes: effect of reaction conditions on viscosity and stability at high solids content. Macromol React Eng. 2011;5(9–10):361–372.
  • Bistline RG, Stirton AJ, Weil JK, et al. Synthetic detergents from animal fats. VI. Polymerizable esters of alpha-sulfonated fatty acids. J Am Oil Chem Soc. 1956;33(1):44–45.
  • Greene BW, Sheetz DP, Filer TD. In situ polymerization of surface-active agents on latex particles I. Preparation and characterization of styrene/butadiene latexes. J Colloid Interface Sci. 1970;32(1):90–95.
  • Asua JM, Schoonbrood HAS. Reactive surfactants in heterophase polymerization. Acta Polym. 1998;49(12):671–686.
  • Montoya-Goñi A, Sherrington DC. Reactive surfactants in heterophase polymerisation: XXIII. Synthesis and characterisation of novel dialkyl maleate cationic surfmers. Polymer. 1999;40(4):1067–1079.
  • Montoya-Goñi A, Sherrington DC, Schoonbrood HAS, et al. Reactive surfactants in heterophase polymerization. XXIV. Emulsion polymerization of styrene with maleate- and succinate-containing cationic surfactants. Polymer. 1999;40(6):1359–1366.
  • Fang C, Jing Y, Lin Z. The application research of environment-friendly reactive surfactants in acrylate emulsion pressure sensitive adhesives. Int J Adhes Adhes. 2017;73:1–7.
  • Aramendia E, Barandiaran MJ, Grade J, et al. Improving water sensitivity in acrylic films using surfmers. Langmuir. 2005;21(4):1428–1435.
  • Aguirreurreta Z, Dimmer JA, Willerich I, et al. Improving the properties of water-borne pressure sensitive adhesives by using non-migratory surfactants. Int J Adhes Adhes. 2016;70:287–296.
  • Aguirreurreta Z, Dimmer JA, Willerich I, et al. Water whitening reduction in waterborne pressure-sensitive adhesives produced with polymerizable surfactants. Macromol Mater Eng. 2015;300(9):925–936.
  • Aguirreurreta Z, de la Cal JC, Leiza JR. Preparation of high solids content waterborne acrylic coatings using polymerizable surfactants to improve water sensitivity. Prog Org Coatings. 2017;112:200–209.
  • Aguirreurreta Z, de la Cal JC, Leiza JR. Anionic polymerizable surfactants and stabilizers in emulsion polymerization: a comparative study. Macromol React Eng. 2017;11(1):1600033.
  • He M, Zhang Q. Application of ammonium α-allyl alkyl phenol polyoxyethylene ether sulfonate in acrylic emulsion pressure-sensitive adhesive. Polym Plast Technol Eng. 2011;50(15):1570–1575.
  • Zhang J, Zhao Y, Dubay MR, et al. Surface enrichment by conventional and polymerizable sulfated nonylphenol ethoxylate emulsifiers in water-based pressure-sensitive adhesive. Ind Eng Chem Res. 2013;52(25):8616–8621.
  • Márquez I, Alarcia F, Velasco JI. Synthesis and properties of water-based acrylic adhesives with a variable ratio of 2-ethylhexyl acrylate and n-butyl acrylate for application in glass bottle labels. Polymers. 2020;12(2):428.
  • Márquez I, Paredes N, Alarcia F, et al. Influence of acrylonitrile content on the adhesive properties of water-based acrylic pressure-sensitive adhesives. Polymers. 2022;14(5):909.
  • González I, Leiza R, Asua M. Exploring the limits of branching and gel content in the emulsion polymerization of N-BA. Macromolecules. 2006;39(15):5015–5020.
  • Plessis C, Arzamendi G, Leiza JR, et al. Decrease in effective acrylate propagation rate constants caused by intramolecular chain transfer. Macromolecules. 2000;33(1):4–7.
  • Alarcia F, de la Cal JC, Asua JM. Continuous production of specialty waterborne adhesives: tuning the adhesive performance. Chem Eng J. 2006;122(3):117–126.
  • America Society for Testing and Materials standard test method for peel adhesion of pressure-sensitive tape 1. In: Annual book of ASTM standards. Vol. 4. West Conshohocken (PA); 2003. p. 1–6.
  • FINAT Technical Committee FINAT test method No. 9 ‘Loop’ tack measurement. In: FINAT Technical Handbook. Vol. 7. The Hague; 2001. p. 22–24.
  • Pressure Sensitive Tape Council Norm PSTC-16. Loop tack measurements. In: Test methods for pressure sensitive adhesive tapes. Oakbrook Terrace (IL); 2007. p. 1–8.
  • FINAT Technical Committee FINAT test method No. 8 resistance to shear from a standard surface. In: FINAT technical handbook. Vol. 7. The Hague; 2001. p. 20–21.
  • FINAT Technical Committee FINAT test method No. 18 dynamic shear. In: FINAT technical handbook. Vol. 11. The Hague; 2001. p. 42–44.
  • America Society for Testing and Materials standard test methods for water vapor transmission of organic coating films 1. In: Annual book of ASTM standards. Vol. 11. West Conshohocken (PA); 2008. p. 1–5.
  • FINAT Technical Committee FINAT test method No. 21 ink adhesion – basic. In: FINAT technical handbook; 2014. p. 53–54.
  • Leo M, Lugli M, Finetti F, et al. European Patent Application. EP 3 434 701 A1. Stable aqueous polymer dispersion. 2019;1:1–18.
  • Gurkov TD, Angarska JK, Tachev KD, et al. Statistics of rupture in relation to the stability of thin liquid films with different size. Colloids Surf A Physicochem Eng Asp. 2011;382(1–3):174–180.
  • Lovell PA, Schork FJ. Fundamentals of emulsion polymerization. Biomacromolecules. 2020;21(11):4396–4441.
  • Hao T, Riman RE. Calculation of interparticle spacing in colloidal systems. J Colloid Interface Sci. 2006;297(1):374–377.
  • Schaller EJ. Latex rheology. In Lovell PA, El-Aasser MS, editors. Emulsion polymerization and emulsion polymers. New York, USA: John Willey & Sons; 1997. p. 437–466.
  • Fox TG, Flory PJ. Second-order transition temperatures and related properties of polystyrene. I. Influence of molecular weight. J Appl Phys. 1950;21(6):581–591.
  • Brady J, Drig T, Lee PI, et al. Polymer properties and characterization. In: Developing solid oral dosage forms: pharmaceutical theory and practice. 2nd ed. London, UK: Elsevier Inc.; 2017. p. 181–223. ISBN 9780128024478.
  • Jovanović R, Ouzineb K, McKenna TF, et al. Butyl acrylate/methyl methacrylate latexes: adhesive properties. Macromol Symp. 2004;206(1):43–56.
  • Luo Z, Huang H. Glass-transition temperature of a polyacrylate latex film and its water whitening resistance. J Appl Polym Sci. 2020;137(6):48361–48368.
  • Kajtna J, Likozar B, Golob J, et al. The influence of the polymerization on properties of an ethylacrylate/2-ethyl hexylacrylate pressure-sensitive adhesive suspension. Int J Adhes Adhes. 2008;28(7):382–390.

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