Testud B, Pintori D, Grau E, Taton D, Cramail H (2017). "Hyperbranched polyesters by polycondensation of fatty acid-based AB n-type monomers". Green Chemistry. 19 (1): 259–69. arXiv:1911.07737. doi:10.1039/C6GC02294D. S2CID102450135.
Kong X, Qi H, Curtis JM (August 2014). "Synthesis and characterization of high-molecular weight aliphatic polyesters from monomers derived from renewable resources". Journal of Applied Polymer Science. 131 (15): 40579–40586. doi:10.1002/app.40579.
Park HS, Seo JA, Lee HY, Kim HW, Wall IB, Gong MS, Knowles JC (August 2012). "Synthesis of elastic biodegradable polyesters of ethylene glycol and butylene glycol from sebacic acid". Acta Biomaterialia. 8 (8): 2911–8. doi:10.1016/j.actbio.2012.04.026. PMID22522011.
Gurunathan T, Mohanty S, Nayak SK (January 2016). "Hyperbranched polymers for coating applications: a review". Polymer-Plastics Technology and Engineering. 55 (1): 92–117. doi:10.1080/03602559.2015.1021482. S2CID100936296.
Testud B, Pintori D, Grau E, Taton D, Cramail H (2017). "Hyperbranched polyesters by polycondensation of fatty acid-based AB n-type monomers". Green Chemistry. 19 (1): 259–69. arXiv:1911.07737. doi:10.1039/C6GC02294D. S2CID102450135.
Parker, David; Bussink, Jan; van de Grampel, Hendrik T.; Wheatley, Gary W.; Dorf, Ernst-Ulrich; Ostlinning, Edgar; Reinking, Klaus; Schubert, Frank; Jünger, Oliver (15 April 2012), "Polymers, High-Temperature", in Wiley-VCH Verlag GmbH & Co. KGaA (ed.), Ullmann's Encyclopedia of Industrial Chemistry, Weinheim, Germany: Wiley-VCH Verlag GmbH & Co. KGaA, pp. a21_449.pub3, doi:10.1002/14356007.a21_449.pub4, ISBN978-3-527-30673-2, retrieved 13 December 2020
Vinogradova SV (January 1977). "The basic principles of non-equilibrium polycondensation". Polymer Science USSR. 19 (4): 769–808. doi:10.1016/0032-3950(77)90232-5.
Duda A, Penczek S (2005). "Mechanisms of Aliphatic Polyester Formation". In Doi Y, Steinbüchel A (eds.). Biopolymers Online. Weinheim, Germany: Wiley-VCH Verlag GmbH & Co. KGaA. pp. 371–383. doi:10.1002/3527600035.bpol3b12.
Lienert KW (1999). "Poly (ester-imide)s for industrial use". In Kricheldorf HR (ed.). Progress in Polyimide Chemistry II. Advances in Polymer Science. Vol. 141. Berlin, Heidelberg: Springer. pp. 45–82. doi:10.1007/3-540-49814-1_2. ISBN978-3-540-64963-2.
Dechy-Cabaret O, Martin-Vaca B, Bourissou D (December 2004). "Controlled ring-opening polymerization of lactide and glycolide". Chemical Reviews. 104 (12): 6147–76. doi:10.1021/cr040002s. PMID15584698.
Loasby G (1951). "The Development of the Synthetic Fibres". Journal of the Textile Institute Proceedings. 42 (8): P411 –P441. doi:10.1080/19447015108663852.
Cappitelli F, Principi P, Sorlini C (August 2006). "Biodeterioration of modern materials in contemporary collections: can biotechnology help?". Trends in Biotechnology. 24 (8): 350–4. doi:10.1016/j.tibtech.2006.06.001. PMID16782219.
Shafik, Ahmed (1993). "Effect of Different Types of Textiles on Sexual Activity". European Urology. 24 (3). Elsevier BV: 375–380. doi:10.1159/000474332. ISSN0302-2838. PMID8262106.
Shafik, Ahmed (1993). "Effect of different types of textile fabric on spermatogenesis: an experimental study". Urological Research. 21 (5). Springer Science and Business Media LLC: 367–370. doi:10.1007/bf00296839. ISSN0300-5623. PMID8279095. S2CID22096865.
Park HS, Seo JA, Lee HY, Kim HW, Wall IB, Gong MS, Knowles JC (August 2012). "Synthesis of elastic biodegradable polyesters of ethylene glycol and butylene glycol from sebacic acid". Acta Biomaterialia. 8 (8): 2911–8. doi:10.1016/j.actbio.2012.04.026. PMID22522011.
Dechy-Cabaret O, Martin-Vaca B, Bourissou D (December 2004). "Controlled ring-opening polymerization of lactide and glycolide". Chemical Reviews. 104 (12): 6147–76. doi:10.1021/cr040002s. PMID15584698.
Cappitelli F, Principi P, Sorlini C (August 2006). "Biodeterioration of modern materials in contemporary collections: can biotechnology help?". Trends in Biotechnology. 24 (8): 350–4. doi:10.1016/j.tibtech.2006.06.001. PMID16782219.
Shafik, Ahmed (1993). "Effect of Different Types of Textiles on Sexual Activity". European Urology. 24 (3). Elsevier BV: 375–380. doi:10.1159/000474332. ISSN0302-2838. PMID8262106.
Shafik, Ahmed (1993). "Effect of different types of textile fabric on spermatogenesis: an experimental study". Urological Research. 21 (5). Springer Science and Business Media LLC: 367–370. doi:10.1007/bf00296839. ISSN0300-5623. PMID8279095. S2CID22096865.
Gurunathan T, Mohanty S, Nayak SK (January 2016). "Hyperbranched polymers for coating applications: a review". Polymer-Plastics Technology and Engineering. 55 (1): 92–117. doi:10.1080/03602559.2015.1021482. S2CID100936296.
Testud B, Pintori D, Grau E, Taton D, Cramail H (2017). "Hyperbranched polyesters by polycondensation of fatty acid-based AB n-type monomers". Green Chemistry. 19 (1): 259–69. arXiv:1911.07737. doi:10.1039/C6GC02294D. S2CID102450135.
Shafik, Ahmed (1993). "Effect of different types of textile fabric on spermatogenesis: an experimental study". Urological Research. 21 (5). Springer Science and Business Media LLC: 367–370. doi:10.1007/bf00296839. ISSN0300-5623. PMID8279095. S2CID22096865.
Shafik, Ahmed (1993). "Effect of Different Types of Textiles on Sexual Activity". European Urology. 24 (3). Elsevier BV: 375–380. doi:10.1159/000474332. ISSN0302-2838. PMID8262106.
Shafik, Ahmed (1993). "Effect of different types of textile fabric on spermatogenesis: an experimental study". Urological Research. 21 (5). Springer Science and Business Media LLC: 367–370. doi:10.1007/bf00296839. ISSN0300-5623. PMID8279095. S2CID22096865.