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Biobased polyurethane adhesive over petroleum based adhesive: Use of renewable resource

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Pages 36-48 | Received 01 May 2017, Accepted 01 Aug 2017, Published online: 04 Dec 2017

References

  • Mubofu, E. B. Materials. Sustain. Chem. Process. 2016, 4, 11.
  • Zhu, Y.; Romain, C.; Williams, C. K. Sustainable polymers from renewable resources. Nature. 2016, 540, 354–362. ISSN: 0028–0836
  • Descroches, M.; Escouviois, M.; Auvergene, R.; Caillol, S.; Bouvin, B. Polym. Rev. 2012, 52, 38–79.
  • Belgacem, M. N. Alessandro Gandini CICECO; Chemistry Department University of Aveiro: Portugal, 2008.
  • Gallezot, P. Chem. Soc. Rev. 2014, 41, 1538.
  • Biermann, U.; Friedt, W.; Lang, S.; Lühs, W.; Machmüller, G.; Metzger, J. O.; Klaas, M. R.; Schäfer, H. J.; Schneider, M. P. Angew. Chem., Int. Ed. Engl. 2000, 39, 2206–2224.
  • Deka, H.; Karak, N. Polym. for Advanced Tech. 2011, 22(6), 973–980.
  • Sangmook, L.; Chong, C. H.; In-Kwon, H.; Jae Wook, L. korean J chem. Eng. 2014, 1–6.
  • Azambuja, M. D. A.; Dias, A. A. Use of castor oil-based polyurethane adhesive in the production of glued laminated timber beams. Mat. Research. 2016, 9(3), pp. 287–291.
  • Ibrahim, S.; Ahmad, A.; Mohamed, N. S. ( 2015). Bull. Mater. Sci. 2015, 38, 1155.
  • Krenceski, M. A.; Johnson, J. F.; Temin, S. C. Biomaterial based novel polyurethane adhesives for wood to wood and metal to metal bonding. J. Macromol. Sci. Rev. Macromol. Chem. 1986, 26, 143.
  • Ang Khoon, P.; Lee Choy, S.; Cheng Sit, F.; Chuah, C. H. Synthesis of palm oil- based polyester polyol for polyurethane adhesive production. J. Appl. Polym. Sci. 2014, 131, 39967.
  • Campanella, A.; Bonnaillie, L. M.; Wool, R. P. Polyurethane foams from soyoil-based polyols. J. Appl. Polym. Sci. 2009, 112, 2567–2578.
  • Lu, Y.; Larock, R. C. Aqueous cationic polyurethane dispersions from vegetable oils. Chem. Sus. Chem. 2010, 3, 329–333.
  • Somania, K. P.; Kansaraa, S. S.; Natvar, Klb.; Rakshita, A. K. Castor oil based polyurethane adhesives for wood-to-wood bonding. Int. J. of Adhes. & Adhes. 2003, 23, 269–275.
  • Valarmathi, E.; Saranya, J.; Sounthari, P.; Parameswari, K.; Subramanian, C. Soya bean oil based polyurethanes for corrosion inhibition of mild steel in acid medium. J. Adhes. Sci. Technol, 2016, 30(5), 468–493, DOI: 10.1080/01694243.2015.1108951
  • Agrawal, R. K.; Drzal, L. T. J. Adhes. Sci. Technol. 1995, 9, 1381.
  • Mitesh, R. P.; Jignesh, M. S.; Natvarbhai, K. P.; Ketan, H. P. Biomaterial Based Novel Polyurethane Adhesives for Wood to Wood and Metal to Metal Bonding, Mat. Research. 2009, 12, 385–393.
  • John, N.; Joseph, R. Rubber solution adhesives for wood-to-wood bonding. J. Appl. Polym. Sci. 1998, 68, 1185.
  • Drelich, J.; Miller, J.; Good, R. The effect of drop (bubble) size on advancing and receding contact angles for heterogenous and rough solid surfaces as observed with sessile-drop and captive-bubble techniques. J. Colloid. Interface Sci. 1996, 179, 37–50.
  • Leonard, F. The n-alkyl alpha cyanoacrylate tissue adhesive. Ann. NY. Acad. Sci. 1968, 146, 203–13.
  • Coover, H. W.; Joiner, F. D.; Shearer, N. H.; Wicker, T. H. Chemistry and performance of cyanoacrylate adhesives. Soc. Plastics Eng. J. 1959, 15, 413–17.
  • Paknejad, M.; Shayesteh, Y. S.; Esmaielieh, A. Free gingival grafting; epiglu vs silk thread suturing: a comparative study. J. Dentistry Tehran University Med Sci. 2004, 1, 39–44.
  • Bhaskar, S. N.; Frisch, J.; Margetis, P. M.; Leonard, F. Application of new chemical adhesives in periodontics and oral surgery. Oral Surgery. 1966, 22, 526–35.
  • Verma, D.; Ahluwalia, T. P. S. Cyanoacrylate tissue adhesives in oral and maxilla facial surgery. J Indian Dent Assoc. 2002, 73, 171–4.
  • Salamone, J. C. Polymeric Material Encyclopedia. Synthesis, Properties and Applications; CRC Press Inc: Boca Raton; p. 150.
  • Fried, J. R. Polymer Science and Technology, 2nd, illustrated, reprint Ed.; Prentice Hall Professional Technical Reference, 2003.
  • Walter, R.; Osterr, F.-U. Holzwirtsch. 1954, 9, 246.
  • Easteal, A. J.; De Silva, K. G. K. PCT Int. Appl. Patent WO 03046099, 2003.
  • Tawada, H.; Okamatsu, T.; Kamikaseda, T. Koen Yoshishu, Nippon Setchaku Gakkai Nenji Taikai. 2001, 39, 67.
  • Feichtmeier, G.; Willett, P. S. PCT Int. Appl. Patent WO 9967343, 1999.
  • Gandert, H.; Diehm, G.; Leubner, M.; Fueger, C.; Weinkoetz, S. PCT Int. Appl. Patent WO 2005097931, 2005.
  • Qiao, L.; Eastel, A. J.; Bolt, C. J.; Coveny, P. K.; Franich, R. A. Pigment Resin Technol. 2000, 29, 152.
  • Ball, P.; Bauer, W.; Graewe, R.; Tangelder, R. Ger. Offen. Patent DE 102004007028, 2005.
  • Boege, K.; Daute, P.; Fies, M.; Klauck, J.; Klein, J. Ger. Offen. Patent DE 4430875, 1995.
  • Mayne, J. E. O.; Warson, H.; Levine, R. M. Synthesis of Modified Poly (vinyl acetate) Adhesives. Patent GB 906117, 1962.
  • Boege, K.; Daute, P.; Fies, M.; Klauck, J.; Klein, J. Ger. Offen. Patent DE 4430875, 1995.
  • Leitheiser, R. H.; Londrigan, M. E.; Rude, C. A. Proc. Am. Chem. Soc. Mtg.; ACS publication: Honolulu, Hawaii, 1979.
  • Gardziella, A.; Pilato, L. A.; Knop, A. Phenolic Resins, 2nd ed.; Springer-Verlag: Berlin, 2000; pp 560.
  • Balaba, W. M.; Subramanian, R. V. Holzforschung. 1985, 39, 143.
  • Philippou, J. L.; Zavarin, E. Holzforschung. 1984, 38, 119.
  • Stemmelen, M.; Pessel, F.; Lapinte, V.; Caillol, S.; Habas, J. P.; Robin, J. J. J. of Polym. Sci. Part A: Polym. Chemistry. 2011, 49, 2434–2444.
  • Pradhan, S.; Pandy, P.; Mohanty, S.; Kumar, S. K. Insight on the chemistry of epoxy and its curing for coating applications: A detailed investigation and future perspectives. Polym. Plast. Technol. Eng. 2016, 55(8), 862–877.
  • Shida, M.; Ping, W.; Zhiguo, S.; Songping, Z. Acta Biomaterialia. 2014, 10, 1692–1704.
  • Soo-Jin, P.; Fan-Long, J.; Jae-Rock, L.; Jae-Sup, S. Eur. Polym. J. 2005, 41, 231–237.
  • Fan-Long, J.; Soo-Jin, P. Mater. Sci. Eng., A. 2008, 478, 402–405.
  • Hiroaki, M.; Amar, K. M.; Manjusri, M.; Lawrence, T. D. Macromol. Mater. Eng. 2004, 289, 629–635.
  • Espan, J. M.; Sanchez-Nacher, L.; Boronat, T.; Fombuena, V.; Balart, R. J. Am. Oil. Chem. Soc. 2012, 89, 2067–2075.
  • Meier, M. A. R.; Metzger, J. O.; Schubert, U.S. Chem. Soc. Rev. 2007, 36, 1788.
  • Mallick, P. K. Fiber-reinforced composites: materials, manufacturing, and design; CRC press, 2007.
  • Tan, S. G.; Chow, W. S. Polymer-Plastics Tech and Eng. 2010, 49, 900.
  • Espinosa, L.Mde.; Meier, M. A. R. Eur. Polym. J. 2011, 47, 837.
  • Guner, F. S.; Yagci, Y.; Erciyes, A. T. Prog. Polym. Sci., 2006, 31, 633.
  • Shabeer, A. G.; Sundararaman, S.; Chandrashekhara, K.; Flanigan, V.; Kapila, S. J. Appl. Polym. Sci. 2005, 98, 1772–1780.
  • Annelise, E. G.; Cesar, L. P.; Ana Paula, O. Costa.; 2002, 79, 8.
  • Pan, X.; Dean, C. Webster, Macromol. Rapid Commun. 2011, 32, 1324–1330.
  • Jun, D.; Xiaoqing, L.; Chao, L.; Yanhua, J. Jin Z. RSC Adv. 2015, 5, 15930–15939.
  • Raghavachar, R.; Letasi, R. J.; Kola, P. V.; Chen, Z.; Massingill, J. L. J. Am. Oil Chem. Soc. 1999, 76, 511.
  • Tan, S. G.; Chow, W. S. J. Therm. Anal. Calorim. 2010, 101, 1051–1058.
  • Ratna, D. Polym. Int. 2001, 50, 179–184.
  • Zhu, J.; Chandrashekhara, K.; Flanigan, V.; Kapila, S. J. Appl. Polym. Sci. 2004, 91, 3513–3518.
  • Miyagawa, H.; Misra, M.; Drzal, L. T. Polym. Eng. Sci. 2005, 45, 487–495.
  • Park, S. J.; Jin, F. L.; Lee, J. R. Mater. Sci. Eng. A. 2004, 374, 109–114.
  • Shabeer, A.; Garg, A.; Sundararaman, S.; Chandrashekhara, K.; Flanigan, V.; Kapila, S. J. Appl. Polym. Sci. 2005, 98, 1772–1780.
  • J Jin, F. L.; Park, S. J. Mater. Sci. Eng. A. 2008, 478, 402–405.
  • Jin, F. L.; Park, S. J. Polym. Int. 2008, 57, 577–583.
  • Lu, J.; Wool, R. P. Compos. Sci. Tech. 2008, 68, 1025–1033.
  • Mustata, F.; Tudorachi, N.; Rosu, D. Composite Part B. 2011, 42, 1803–1812.
  • Yang, D.; Han, L.; Zhang, H.; Qiu, F. Journal of Macrmol. Sci., Part A. 2011, 48(4), 277–283.
  • Gupta, A. P.; Ahmad, S.; Dev, A. Polym. Eng. Sci. 2011, 51, 1087–1091.
  • Sahoo, S. K.; Mohanty, S.; Nayak, S. K. Chin. J. Polym. Sci. 2015, 33, 137–152.
  • Kong, X.; Yue, J.; Narine, S. S. Biomacromolecules. 2007, 8, 2203–2209.
  • Rahman, M. M.; Hasneen, A.; Lee, W. K.; Lim, K. T. J. Sol-Gel Sci. Technol. 2013, 67, 473–479.
  • Arán-Aís, F.; Torró-Palau, A. M.; Orgilés-Barceló, A. C.; Martín-Martínez, J. M. J. of adhes. Sci. and tech. 2000, 14, 1557–1573.
  • Arán-Aís, F.; Torró-Palau, A. M.; Orgilés-Barceló, A. C.; Martín-Martínez, J. M. J. Adhes. Sci. Technol. 2000, 14, 1557–1573.
  • The Chemistry of Polyurethane Coatings, Bayer materials science. https://www.pharosproject.net/uploads/files/cml/1383145151.pdf.
  • Reischl et al. Process for the preparation of stable dispersions. US 4093569 A, june 6, 1978.
  • Goyert et al. Process for the production of thermoplastic polymer by introducing thermoplastic polymer into an extruder and adding organic polyisocyanate and chain lengthening agent. US 4261946 A, Apr 14, 1981.
  • Metzger, J. O.; Eissen, M. Renewable raw materials.C. R. Chim. 2004, 7, 569–581.
  • Packham, D. E. Int J AdhesAdhes. 2009, 29, 248–252.
  • Mothe, ´.C. G.; Arau´jo, C. R. ThermActa.2000, 357, 321–325.
  • Mahapatra, S. S.; Karak, N. Prog Org Coat. 2004, 51, 103–108.
  • Trevino, A. S.; Trumbo, D. L. Prog Org Coat. 2002, 44, 49–54.
  • Xie, H. Q.; Guo, J. S. EurPolym J. 2002, 38, 2271–2277.
  • Nunes, R. C. R.; Fonseca, J. L. C.; Pereira, M. R. Polymer–filler interactions and mechanical properties of a polyurethane elastomer. Polymer Testing. 2000, 19(1), 93–103.
  • Modesti, M.; Lorenzetti, A.; Simioni, F.; Camino, G. Expandable graphite as an intumescent flame retardant in polyisocyanurate–polyurethane foams. Polymer Degradation and Stability. 2002, 77(2), 195–202.
  • Weiss, K. D. Paint and coatings: a mature industry in transition. Progress in Polymer Science. 1997, 22(2), 203–245.
  • Dinwoodie, J. M. The properties and performance of particle board adhesives. Journal of the Institute of Wood Science. 1979, 8(59), 8–9.
  • Myers, G. E. New technologies and materials for bonding wood products. Adhesives Age. 1988, 31(11), 31–36.
  • White, J. T. Market trends for wood adhesives. Adhesives Age. 1981, 24(7), 19–22.
  • Cocks, L. V.; Rede, C. V. Laboratory handbook for oil and fat analysts. Laboratory handbook for oil and fat analysts. 1966, pp.xxiv + 419 pp.
  • Petrovic, Z. S. Polym Rev. 2008, 48, 109–155.
  • Petrovic, Z. S.; Ionescu, M.; Javni, I. Polyglycerol based polyols and polyurethanes and methods for producing polyols and polyurethanes, US Patent Application 20090082483, 2009.
  • Valero, M. F.; Pulido, J. E.; Ramirez, A.; Cheng, Z. J Am Oil Chem Soc. 2009, 86, 383–392.
  • Salamone, J. C. Polymeric Material Encyclopedia. Synthesis, properties and applications; CRC Press Inc: Boca Raton, p. 150.
  • Chattopadhyay, D. K.; Raju, K. V. S. N. Prog.Polym. Sci. 2007, 32, 352–418.
  • Meier-Westhues, U. Polyurethanes: coatings, adhesives and sealants; Vincentz Network: Hannover, 2007.
  • Bakul, Kki.; Thorat, Dr. P. V. Int. J. of Sci. and Research (IJSR). ISSN: 2319-7064
  • Dias, F. M.; Lahr, F. A. R. Mat. Research. 2004, 7, 413–420.
  • Sebenik, U.; Krajnc, M. Int. J. Adhes. Adhes. 2007, 27, 527–535.
  • Richter, K.; Pizzi, A.; Despres, A. J. Appl. Polym. Sci. 2006, 102, 5698–5707.
  • Li, X.; Gao, Z.; Gu, J.; Zhao, F.; Bai, X. Pigm Resin Technol. 2004, 33, 345–351.
  • Charles, V. C. Hand book of adhesive bonding; Mc- Graw Hill: New York, 1973; pp 175.
  • Siva, R. K. C. Efficient green synthetic routes to bio-based polyurethanes from soymeal; A dissertion Submitted to Michigan State University in partial fulfillment of the requirements for degree of Packaging. Michigan state University.
  • Chattopadhyay, D. K.; Sreedhar, B.; Raju, K. V. S. N. Polymer. 2006, 47, 3814–3825.
  • Beaud, F.; Niemz, P.; Pizzi, A. J. Appl. Polym. Sci. 2006, 101, 4181–4192.
  • Malucelli, G.; Priola, A.; Ferrero, F.; Quaglia, A.; Frigione, M.; Carfagna, C. Polyurethane resin-based adhesives: curing reaction andproperties of cured systems. Int. J. Adhes. Adhes. 2005, 25, 87–91.
  • Trân, N. B.; Vialle, J.; Pham, Q. T. Castor oil-based polyurethanes: 1. Structural characterization of castor oil—nature of intact glycerides and distribution of hydroxyl groups. Polymer. 1997, 38, 2467–2473.
  • Barikani, M.; Mohammadi, M. Synthesis and characterization of starch-modified polyurethane. CarbohydrPolym. 2007, 68, 773–780.
  • Lligadas, G.; Ronda, J. C.; Galia, M.; Biermann, U.; Metzger, J. O. J. PolymSci Part A: Polym Chem. 2006, 44, 634–645.
  • Marwan, R. K.; Don, E. F. U.S. Pat. 1968, 3(481), 774.
  • Cayli, G.; Kusefoğlu, S. J. App. Pol. Sci. 2008, 109, 2948–2955.
  • Sahoo, S.; Kalta, H.; Mohanty, S.; Nayak, S. K. J. Chem. Kinet. 2016, 1–13.
  • Petrovic´, Z. S.; Zhang, W.; Javni, I. 2005, 6, 713–719.
  • Guo, A.; Cho, Y.; Petrovic´, Z. S. J. Polym. Sci. Part A: Polym. Chem. 2000, 38, 3900–3910.
  • Guo, Y.; Hardesty, J.; Mannari, V.; Massingill, J. J.Am. Oil Chem. Soc. 2007, 84, 929–935.
  • Gurunathan, T.; Mohanty, S.; Nayak, S. K. Prog. Org. Coat. 2015, 80, 39.
  • Kim, D. S.; Macosko, C. W. Reaction kinetics and chemorheology of a highly reactive PU system. Korea Polymer Journal. 1996, 4, 54–60.
  • Hernández-Sánchez, F.; Vázquez-Torres, H. Activation energy for urethane-linkage formation. An improved calculation from the differential scanning calorimetry data. Journal of Polymer Science Part A: Polymer Chemistry. 1990, 28(6), 1579–1592.
  • Choi, S. W.; Seo, D. W.; Lim, Y. D.; Jeong, Y. G.; Mollah, M. S. I.; Park, H.; Tae, W. H.; Whan, G. K. J. Appl. Polym. Sci. 2011, 121, 764–769.
  • Badri, K. H.; Ujar, A. H.; Othman, Z.; Sahaldin, F. H. J. Appl. Polym. Sci. 2006, 100, 1759–1764.
  • Petrovic´, Z. S. Polym. Rev. 2008, 48, 109–155.
  • Kong, X.; Liu, G.; Curtis, J. M. Adhesives.Int. J. Adhes. Adhes. 2011, 31, 559–564.
  • Petrovic´, Z. S.; Cvetkovic´, I.; Hong, D.; Wan, X.; Zhang, W.; Abraham, T.; Malsam, J. J. Appl. Polym. Sci. 2008, 108, 1184–1190.
  • Petrovic´, Z. S.; Zhang, W.; Javni, I. 2005, 6, 713–719.
  • Lin, B.; Yang, L.; Dai, H.; Yi, A. J. Am. Oil Chem. Soc. 2008, 85, 113–117.
  • Ionescu, M. Oligo-Polyols for Elastic Polyurethane in Chemistry and Technology of Polyols for Polyurethanes. Rapra Technology Limited; Shawbury, Shrewsbury, Shropshire, 2005.
  • Min, M. A.; Zahir, A. Y.; Siti, K.; Luqman, C. A. Industrial Crops and Products. 2014, 60, 177–185
  • Khoon, P. A.; Choy, S. L.; Sit, F. C.; Cheng, H. C. J. appl. polym. sci. 2013, 000, 39967.
  • Huang, J.; Zou, J. W.; Chang, P. R.; Yu, J. H.; Dufresne, A. Express polymer letters. 2011, 5, 362–373.
  • Sardon, H.; Irusta, L.; Fernandez-Berridi, M. J.; Lansalot, M.; Bourgeat-Lami, J. Polymer. 2010, 51, 5051–5057.
  • Delpech, M. C.; Coutinho, F. M. B. Polym. Test. 2000, 19, 939–952.
  • Garcia-Pacios, V.; Iwata, Y.; Colera, M.; Martin-Martinen, J. M. Int. J. Adhes. Adhes. 2011, 31, 787–794.
  • Sardon, H.; Irusta, L.; Gonzalez, A.; Fernandez-Berridi, M. J. Prog. Org. Coat. 2013, 76, 1230–1235.
  • Ballard, N.; Carretero, P.; Asua, J. M. Macromol. React. Eng. 2013, 7, 504–514.
  • Lopez, A.; Reyes, Y.; Degrandi-Contraires, E.; Canetta, E.; Creton, C.; Asua, J. M. Eur.Polym. J. 2013, 49, 1541–1552.
  • Cakic, S. M.; Ristic, I. S.; Marinovic-Cincovic, M.; Spirkova, M. Int. J. Adhes. Adhes. 2013, 127, 2732–2738.
  • Genova, R. D.; Harper, M. D.; Clay, W. A.; Cranley, P. E.; Hunte, M. K. TAPPI J. 1996, 79, 196.
  • Hung, J. M. Proceeding of the Hot Melt Symposium, Hilton Head Island, SC, 2001, 91–97.
  • Kuo, P. L.; Liang, W. J.; Lin, C. L. Macromol. Chem. Phys. 2002, 203, 230–237.
  • Li, X. R.; Fei, G. Q.; Wang, H. H. J. Appl. Polym. Sci. 2006, 100, 40–46.
  • Tang, Q.; He, J.; Yang, R.; Ai, Q. J. Appl. Polym. Sci. 2013, 128, 2152–2161.
  • Hojabri, L.; Kong, X. H.; Narine, S. S. J Polym Sci Pol Chem. 2010, 48(15), 3302–3310.
  • More, A. S.; Lebarbe, T.; Maisonneuve, L.; Gadenne, B.; Alfos, C.; Cramail, H. EurPolym J. 2013, 49, 823–833.
  • Zenner, M. D.; Xia, Y.; Chen, J. S.; Kessler, M. R. Chemsuschem. 2013, 6, 1182–1185.
  • Shen, L.; Haufe, J.; Patel, M. K. Product Overview and Market projection of emerging bio-based plastics. 2009.
  • Dutta, S.; Karak, N.; Jena, T. Prog. Org. Coat. 2009, 65, 131–135.
  • Minrui, L.; Zhen, Z.; Shujuan, L.; Yuezeng, S.; Wei, W.; Xinling, W. Int. J. of Adhes. & Adhes. 2011, 31, 565–570.
  • Kalita, H.; Karak, N. J. Nanosci. Nanotechnol. 2014, 14, 5435–5442.
  • Muhammad, Z.; Sahrim, H. A.; Nor Azwin, A.; Ernie Suzana, A. Advanced Mat. Research. 2014, 879, 119–127.
  • Motta, O.; Protob, A.; carlob, F. D.; Caroa, F. D.; Santora, E.; Brunettia, L.; Capunzoa, M. Int. J. Hyg. Environ.Heal. 2009, 212, 61–66.
  • Kong, X.; Liu, G.; Qi, H.; Curtis, J. M. Preparation and characterization of high-solid polyurethane coating systems based on vegetable oil derived polyols. Progress in organic coatings. 2013, 76(9), 1151–1160
  • Garrison, T. F.; Kessler, M. R.; Larock, R. C. Polymer. 2014, 55, 1004–1011.
  • Wicks, Z. W. Jr.; Jones, F. N.; Pappas, S. P.; Wicks, D. A. Organic Coatings: Science and Technology; John Wiley & Sons, Inc.: Hoboken, NJ, 2007.
  • Desai, S. D.; Patel, J. V.; Sinha, V. K. Int. J. Adhes.Adhes. 2003, 23, 393–399.
  • Pizzi, A. Int. J. Adhes. Adhes. 2006, 20, 829–846.
  • Mishra, D.; Sinha, V. K. Int. J. Adhes. Adhes. 2010, 30, 47–54.
  • Walter, R. Osterr Forst- u. Holzwirtsch. 1954, 9, 246.
  • Tawada, H.; Okamatsu, T.; Kamikaseda, T.; Yoshishu, K. Nippon Setchaku Gakkai Nenji Taikai. 2001, 39, 67.
  • Gandert, H.; Diehm, G.; Leubner, M.; Fueger, C.; Weinkoetz, S. PCT Int. Appl. Patent WO 2005097931, 2005.
  • Qiao, L.; Eastel, A. J.; Bolt, C. J.; Coveny, P. K.; Franich, R. A. Pigment Resin Technol. 2000, 29, 152.
  • Weiss, K. D. Prog.Polym. Sci. 1997, 22, 203–245.
  • Akram, D.; Sharmin, E.; Ahmad, S. J. Appl. Polym. Sci. 2010, 116, 499–508.
  • Vallat, M. F.; Bessaha, B. J. Appl. Polym. Sci. 2000, 76, 665–671.
  • Eling, B.; Phanopolous, C. Kortenberg. 2003.
  • Strobech, C. Int. J. of Adhes. & Adhes. 1990, 10, 225–228.
  • Sharma, V.; Kundu, P. P. Prog. in Polym Sci. 2008, 33(12), 1199–1215.

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