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Plasticizing effect of biobased epoxidized fatty acid esters on mechanical and thermal properties of poly(lactic acid)

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Plasticizing effect of biobased epoxidized fatty acid esters on mechanical and thermal properties of poly(lactic acid)

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Ferri Azor, JM.; Samper Madrigal, MD.; García Sanoguera, D.; Reig Pérez, MJ.; Fenollar Gimeno, OÁ.; Balart Gimeno, RA. (2016). Plasticizing effect of biobased epoxidized fatty acid esters on mechanical and thermal properties of poly(lactic acid). Journal of Materials Science. 51(11):5356-5366. https://doi.org/10.1007/s10853-016-9838-2

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/81707

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Título: Plasticizing effect of biobased epoxidized fatty acid esters on mechanical and thermal properties of poly(lactic acid)
Autor: Ferri Azor, José Miguel Samper Madrigal, María Dolores García Sanoguera, David Reig Pérez, Miguel Jorge Fenollar Gimeno, Octavio Ángel Balart Gimeno, Rafael Antonio
Entidad UPV: Universitat Politècnica de València. Instituto de Tecnología de Materiales - Institut de Tecnologia de Materials
Universitat Politècnica de València. Escuela Politécnica Superior de Alcoy - Escola Politècnica Superior d'Alcoi
Fecha difusión:
Resumen:
Poly(lactic acid), PLA, is a polyester that can be produced from lactic acid derived from renewable resources. This polymer offers attracting uses in packaging industry due to its biodegradability and high tensile strength. ...[+]
Palabras clave: Food-packaging applications , Linseed oil , Vinyl plastisols , Tributyl citrate , Vegetable-oils , Lactic-acid , Soybean oil , Blends , PLA , Fibers
Derechos de uso: Reserva de todos los derechos
Fuente:
Journal of Materials Science. (issn: 0022-2461 ) (eissn: 1573-4803 )
DOI: 10.1007/s10853-016-9838-2
Editorial:
Springer Verlag (Germany)
Versión del editor: http://dx.doi.org/10.1007/s10853-016-9838-2
Código del Proyecto:
info:eu-repo/grantAgreement/MINECO//MAT2014-59242-C2-1-R/ES/TECNICAS AVANZADAS DE PROCESADO PARA SISTEMAS ACTIVOS ENCAPSULADOS/
info:eu-repo/grantAgreement/GVA//GV%2F2014%2F008/
Agradecimientos:
This research was supported by the Ministry of Economy and Competitiveness-MINECO, Ref: MAT2014-59242-C2-1-R. Authors also thank to "Conselleria d'Educacio, Cultura i Esport"-Generalitat Valenciana, Ref: GV/2014/008 for ...[+]
Tipo: Artículo

References

Alam J, Alam M, Raja M, Abduljaleel Z, Dass LA (2014) MWCNTs-reinforced epoxidized linseed oil plasticized polylactic acid nanocomposite and its electroactive shape memory behaviour. Int J Mol Sci 15(11):19924–19937. doi: 10.3390/ijms151119924

Arrieta MP, Fortunati E, Dominici F, Lopez J, Kenny JM (2015) Bionanocomposite films based on plasticized PLA-PHB/cellulose nanocrystal blends. Carbohydr Polym 121:265–275. doi: 10.1016/j.carbpol.2014.12.056

Dharmalingam S, Hayes DG, Wadsworth LC, Dunlap RN, DeBruyn JM, Lee J, Wszelaki AL (2015) Soil degradation of polylactic acid/polyhydroxyalkanoate-based nonwoven mulches. J Polym Environ 23(3):302–315. doi: 10.1007/s10924-015-0716-9 [+]
Alam J, Alam M, Raja M, Abduljaleel Z, Dass LA (2014) MWCNTs-reinforced epoxidized linseed oil plasticized polylactic acid nanocomposite and its electroactive shape memory behaviour. Int J Mol Sci 15(11):19924–19937. doi: 10.3390/ijms151119924

Arrieta MP, Fortunati E, Dominici F, Lopez J, Kenny JM (2015) Bionanocomposite films based on plasticized PLA-PHB/cellulose nanocrystal blends. Carbohydr Polym 121:265–275. doi: 10.1016/j.carbpol.2014.12.056

Dharmalingam S, Hayes DG, Wadsworth LC, Dunlap RN, DeBruyn JM, Lee J, Wszelaki AL (2015) Soil degradation of polylactic acid/polyhydroxyalkanoate-based nonwoven mulches. J Polym Environ 23(3):302–315. doi: 10.1007/s10924-015-0716-9

Lin C-M, Lin C-H, Huang Y-T, Lou C-W, Lin J-H (2013) Mechanical and electrical properties of the polyaniline (PANI)/polylactic acid (PLA) nonwoven fabric. In: Kida K (ed), Machine design and manufacturing engineering II, Pts 1 and 2, vols 365–366. pp 1074–1077. doi: 10.4028/www.scientific.net/AMM.365-366.1074

Serafini Immich AP, Lis Arias M, Carreras N, Luis Boemo R, Antonio Tornero J (2013) Drug delivery systems using sandwich configurations of electrospun poly(lactic acid) nanofiber membranes and ibuprofen. Mater Sci Eng C-Mater Biol Appl 33(7):4002–4008. doi: 10.1016/j.msec.2013.05.034

Llorens E, Calderon S, del Valle LJ, Puiggali J (2015) Polybiguanide (PHMB) loaded in PLA scaffolds displaying high hydrophobic, biocompatibility and antibacterial properties. Mater Sci Eng C-Mater Biol Appl 50:74–84. doi: 10.1016/j.msec.2015.01.100

Nainar SMM, Begum S, Ansari MNM, Hoque ME, Aini SS, Ng MH, Ruszymah BHI (2014) Effect of compatibilizers on in vitro biocompatibility of PLA-HA bioscaffold. Bioinspired Biomim Nanobiomater 3(4):208–216. doi: 10.1680/bbn.14.00014

Huang R, Zhu X, Tu H, Wan A (2014) The crystallization behavior of porous poly(lactic acid) prepared by modified solvent casting/particulate leaching technique for potential use of tissue engineering scaffold. Mater Lett 136:126–129. doi: 10.1016/j.matlet.2014.08.044

Yesid Gomez-Pachon E, Manuel Sanchez-Arevalo F, Sabina FJ, Maciel-Cerda A, Montiel Campos R, Batina N, Morales-Reyes I, Vera-Graziano R (2013) Characterisation and modelling of the elastic properties of poly(lactic acid) nanofibre scaffolds. J Mater Sci 48(23):8308–8319. doi: 10.1007/s10853-013-7644-7

Zhang J, Yin H-M, Hsiao BS, Zhong G-J, Li Z-M (2014) Biodegradable poly(lactic acid)/hydroxyl apatite 3D porous scaffolds using high-pressure molding and salt leaching. J Mater Sci 49(4):1648–1658. doi: 10.1007/s10853-013-7848-x

Armentano I, Fortunati E, Burgos N, Dominici F, Luzi F, Fiori S, Jimenez A, Yoon K, Ahn J, Kang S, Kenny JM (2015) Processing and characterization of plasticized PLA/PHB blends for biodegradable multiphase systems. Exp Polym Lett 9(7):583–596. doi: 10.3144/expresspolymlett.2015.55

Patricia Arrieta M, del Mar Castro-Lopez M, Rayon E, Fernando Barral-Losada L, Manuel Lopez-Vilarino J, Lopez J, Victoria Gonzalez-Rodriguez M (2014) Plasticized poly(lactic acid)-poly(hydroxybutyrate) (PLA-PHB) blends incorporated with catechin intended for active food-packaging applications. J Agric Food Chem 62(41):10170–10180. doi: 10.1021/jf5029812

He Y, Hu Z, Ren M, Ding C, Chen P, Gu Q, Wu Q (2014) Evaluation of PHBHHx and PHBV/PLA fibers used as medical sutures. J Mater Sci-Mater Med 25(2):561–571. doi: 10.1007/s10856-013-5073-4

Vieira AC, Vieira JC, Ferra JM, Magalhaes FD, Guedes RM, Marques AT (2011) Mechanical study of PLA-PCL fibers during in vitro degradation. J Mech Behav Biomed Mater 4(3):451–460. doi: 10.1016/j.jmbbm.2010.12.006

K-y Zhang, X-h Ran, Y-g Zhuang, Yao B, L-s Dong (2009) Blends of poly(lactic acid) with thermoplastic acetylated starch. Chem Res Chin Univ 25(5):748–753

Chieng BW, Ibrahim NA, Yunus WMZW, Hussein MZ (2013) Plasticized poly(lactic acid) with low molecular weight poly(ethylene glycol): mechanical, thermal, and morphology properties. J Appl Polym Sci 130(6):4576–4580. doi: 10.1002/app.39742

Yu Y, Cheng Y, Ren J, Cao E, Fu X, Guo W (2015) Plasticizing effect of poly(ethylene glycol)s with different molecular weights in poly(lactic acid)/starch blends. J Appl Polym Sci 132(16). doi: 10.1002/app.41808

Nazari T, Garmabi H (2014) Polylactic acid/polyethylene glycol blend fibres prepared via melt electrospinning: effect of polyethylene glycol content. Micro Nano Lett 9(10):686–690. doi: 10.1049/mnl.2013.0735

Piorkowska E, Kulinski Z, Galeski A, Masirek R (2006) Plasticization of semicrystalline poly(l-lactide) with poly(propylene glycol). Polymer 47(20):7178–7188. doi: 10.1016/j.polymer.2006.03.115

Burgos N, Martino VP, Jimenez A (2013) Characterization and ageing study of poly(lactic acid) films plasticized with oligomeric lactic acid. Polym Degrad Stab 98(2):651–658. doi: 10.1016/j.polymdegradstab.2012.11.009

Dobircau L, Delpouve N, Herbinet R, Domenek S, Le Pluart L, Delbreilh L, Ducruet V, Dargent E (2015) Molecular mobility and physical ageing of plasticized poly(lactide). Polym Eng Sci 55(4):858–865. doi: 10.1002/pen.23952

Hassouna F, Raquez J-M, Addiego F, Toniazzo V, Dubois P, Ruch D (2012) New development on plasticized poly(lactide): chemical grafting of citrate on PLA by reactive extrusion. Eur Polymer J 48(2):404–415. doi: 10.1016/j.eurpolymj.2011.12.001

Tsou C-H, Suen M-C, Yao W-H, Yeh J-T, Wu C-S, Tsou C-Y, Chiu S-H, Chen J-C, Wang RY, Lin S-M, Hung W-S, De Guzman M, Hu C-C, Lee K-R (2014) Preparation and characterization of bioplastic-based green renewable composites from tapioca with acetyl tributyl citrate as a plasticizer. Materials 7(8):5617–5632. doi: 10.3390/ma7085617

Jing J, Qa Qiao, Jin Y, Ma C, Cai H, Meng Y, Cai Z, Feng D (2012) Molecular and mesoscopic dynamics simulations on the compatibility of PLA/plasticizer blends. Chin J Chem 30(1):133–138. doi: 10.1002/cjoc.201180454

Ljungberg N, Wesslen B (2003) Tributyl citrate oligomers as plasticizers for poly (lactic acid): thermo-mechanical film properties and aging. Polymer 44(25):7679–7688. doi: 10.1016/j.polymer.2003.09.055

Notta-Cuvier D, Murariu M, Odent J, Delille R, Bouzouita A, Raquez J-M, Lauro F, Dubois P (2015) Tailoring polylactide properties for automotive applications: effects of co-addition of halloysite Nanotubes and selected plasticizer. Macromol Mater Eng 300(7):684–698. doi: 10.1002/mame.201500032

Carbonell-Verdu A, Bernardi L, Garcia-Garcia D, Sanchez-Nacher L, Balart R (2015) Development of environmentally friendly composite matrices from epoxidized cottonseed oil. Eur Polymer J 63:1–10. doi: 10.1016/j.eurpolymj.2014.11.043

Samper MD, Fombuena V, Boronat T, Garcia-Sanoguera D, Balart R (2012) Thermal and mechanical characterization of epoxy resins (ELO and ESO) cured with anhydrides. J Am Oil Chem Soc 89(8):1521–1528. doi: 10.1007/s11746-012-2041-y

Samper MD, Petrucci R, Sanchez-Nacher L, Balart R, Kenny JM (2015) Properties of composite laminates based on basalt fibers with epoxidized vegetable oils. Mater Des 72:9–15. doi: 10.1016/j.matdes.2015.02.002

Samper MD, Petrucci R, Sanchez-Nacher L, Balart R, Kenny JM (2015) New environmentally friendly composite laminates with epoxidized linseed oil (ELO) and slate fiber fabrics. Compos Part B Eng 71:203–209. doi: 10.1016/j.compositesb.2014.11.034

Bueno-Ferrer C, Garrigos MC, Jimenez A (2010) Characterization and thermal stability of poly(vinyl chloride) plasticized with epoxidized soybean oil for food packaging. Polym Degrad Stab 95(11):2207–2212. doi: 10.1016/j.polymdegradstab.2010.01.027

Bueno-Ferrer C, Jimenez A, Garrigos MC (2010) Migration analysis of epoxidized soybean oil and other plasticizers in commercial lids for food packaging by gas chromatography-mass spectrometry. Food Addit Contam Part a—Chem Anal Control Expo Risk Assess 27(10):1469–1477. doi: 10.1080/19440049.2010.502129

Fenollar O, Garcia-Sanoguera D, Sanchez-Nacher L, Lopez J, Balart R (2010) Effect of the epoxidized linseed oil concentration as natural plasticizer in vinyl plastisols. J Mater Sci 45(16):4406–4413. doi: 10.1007/s10853-010-4520-6

Fenollar O, Garcia-Sanoguera D, Sanchez-Nacher L, Lopez J, Balart R (2012) Characterization of the curing process of vinyl plastisols with epoxidized linseed oil as a natural-based plasticizer. J Appl Polym Sci 124(3):2550–2557. doi: 10.1002/app.34645

Semsarzadeh MA, Mehrabzadeh M, Arabshahi SS (2005) Mechanical and thermal properties of the plasticized PVC-ESBO. Iran Polym J 14(9):769–773

Chieng BW, Ibrahim NA, Then YY, Loo YY (2014) Epoxidized vegetable oils plasticized poly(lactic acid) biocomposites: mechanical, thermal and morphology properties. Molecules 19(10):16024–16038. doi: 10.3390/molecules191016024

Prempeh N, Li J, Liu D, Das K, Maiti S, Zhang Y (2014) Plasticizing effects of epoxidized sun flower oil on biodegradable polylactide films: a comparative study. Polym Sci Ser A 56(6):856–863. doi: 10.1134/s0965545x14060182

Santos EF, Oliveira RVB, Reiznautt QB, Samios D, Nachtigall SMB (2014) Sunflower-oil biodiesel-oligoesters/polylactide blends: plasticizing effect and ageing. Polym Test 39:23–29. doi: 10.1016/j.polymertesting.2014.07.010

Li H, Huneault MA (2007) Effect of nucleation and plasticization on the crystallization of poly(lactic acid). Polymer 48(23):6855–6866. doi: 10.1016/j.polymer.2007.09.020

Arrieta MP, Lopez J, Ferrandiz S, Peltzer MA (2013) Characterization of PLA-limonene blends for food packaging applications. Polym Test 32(4):760–768. doi: 10.1016/j.polymertesting.2013.03.016

Arrieta MP, Samper MD, Lopez J, Jimenez A (2014) Combined effect of poly(hydroxybutyrate) and plasticizers on polylactic acid properties for film intended for food packaging. J Polym Environ 22(4):460–470. doi: 10.1007/s10924-014-0654-y

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