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Title:Unlocking innovation: Novel films synthesised and structurally analysed from poly (l-lactide-co-ethylene adipate) block copolymers blended with poly(lactic acid)
Authors:ID John, Athira (Author)
ID Pušnik Črešnar, Klementina (Author)
ID Stanley, Johan (Author)
ID Vohl, Sabina (Author)
ID Makuc, Damjan (Author)
ID Bikiaris, Dimitrios (Author)
ID Fras Zemljič, Lidija (Author)
Files:.pdf 1-s2.0-S0142941825000212-main.pdf (10,53 MB)
MD5: 62AB0B261EF98B11169A05F4653C0524
 
URL https://www.sciencedirect.com/science/article/pii/S0142941825000212?via%3Dihub
 
Language:English
Work type:Article
Typology:1.01 - Original Scientific Article
Organization:FS - Faculty of Mechanical Engineering
Abstract:This study addresses the inherent shortcomings of poly (lactic acid) (PLA), a biodegradable polymer widely used in industries such as packaging and biomedical applications. The principal challenge of PLA resides in its low crystallinity, which detrimentally affects its mechanical properties and thermal stability. Additionally, PLA is prone to water and hydrolysis, which compromises its chemical resistance and can lead to degradation over time. To overcome surmount these limitations, the study focuses on the development of hybrid films through the blending of PLA with poly (l-lactide-co-ethylene adipate) (pLEA) block copolymers. The objective is to augment the crystallinity, mechanical performance, and chemical resistance of the resulting materials. The study employs a range of analytical techniques, including Nuclear Magnetic Resonance (NMR), Fourier Transform Infrared Spectroscopy (FTIR), X-ray Diffraction (XRD), Polarised Light Microscopy (PLM), Differential Scanning Calorimetry (DSC), and Thermogravimetric Analysis (TGA), to thoroughly characterize the copolymers and blend films. By systematically selecting blending ratios and processing methodologies, the study demonstrates enhancements in the properties of the resultant hybrid films compared to neat PLA. Specifically, the structure of films significantly changed from amorphous to crystalline in a short duration - 5 min, of annealing., leading to better tensile strength, modulus and reduced wettability, which are crucial for applications requiring durability and resistance to environmental factors. Films made from 30 wt% of pLEA 97.5/2.5 with 70 % of PLA by fast cooling exhibited outstanding mechanical properties, with a tensile strength 20 MPa higher than that of neat PLA films. Additionally, the chemical resistance may be improved, as evidenced by a decrease in wettability by approximately 15° and a reduction in the polar component of the surface free energy by about 7 mN/m. Hydrophobic, water-repellent materials resist penetration by water and other polar solvents, reducing exposure to corrosive substances and enhancing chemical resistance through barrier protection. Overall, this research addresses the limitations of PLA through innovative copolymerization and blending strategies, offering valuable insights into optimizing the material's properties for various practical applications.
Keywords:Poly(lactic acid), Poly(l-lactide-co-ethylene adipate), copolymer, blend, crystallinity
Publication status:Published
Publication version:Version of Record
Submitted for review:10.01.2025
Article acceptance date:15.01.2025
Publication date:22.01.2025
Publisher:Elsevier
Year of publishing:2025
Number of pages:str. 1-19
Numbering:Vol. 143, [article no.] 108707
PID:20.500.12556/DKUM-92058 New window
UDC:543.2
ISSN on article:1873-2348
COBISS.SI-ID:227078147 New window
DOI:10.1016/j.polymertesting.2025.108707 New window
Publication date in DKUM:13.03.2025
Views:214
Downloads:19
Metadata:XML DC-XML DC-RDF
Categories:Misc.
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Record is a part of a journal

Title:Polymer testing
Publisher:Elsevier
ISSN:1873-2348
COBISS.SI-ID:23025669 New window

Document is financed by a project

Funder:EC - European Commission
Project number:956265
Name:Advanced research and Training Network in Food quality, safety and security
Acronym:FoodTraNet

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0118-2022
Name:Tekstilna kemija in napredni tekstilni materiali

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P1-0242-2022
Name:Kemija in struktura bioloških učinkovin

Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.

Secondary language

Language:Slovenian
Keywords:poli(mlečna kislina), poli(l-laktid-ko-etilen adipat), kopolimeri, mešanice, kristaliničnost


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