Eco-Friendly Blends of Recycled PET Copolymers with PLLA and Their Composites with Chopped Flax Fibres
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B. Nysten | T. Pardoen | P. Van Velthem | C. Bailly | W. Ballout | M. Ndikontar | N. Klavzer | M. Kuété
[1] K. Pant,et al. Chemical recycling processes of waste polyethylene terephthalate using solid catalysts. , 2023, ChemSusChem.
[2] Z. Mohamad,et al. An overview of the recent advances in flame retarded poly(lactic acid) , 2023, Polymers for Advanced Technologies.
[3] B. Nysten,et al. Integrated Approach to Eco-Friendly Thermoplastic Composites Based on Chemically Recycled PET Co-Polymers Reinforced with Treated Banana Fibres , 2022, Polymers.
[4] J. Kovács,et al. Comparison of the efficiency of the most effective heterogeneous nucleating agents for Poly(lactic acid) , 2021, Journal of Thermal Analysis and Calorimetry.
[5] D. Tonini,et al. Environmental and Socioeconomic Impacts of Poly(ethylene terephthalate) (PET) Packaging Management Strategies in the EU. , 2021, Environmental science & technology.
[6] T. Pardoen,et al. Bio‐Sourced Poly l ‐Lactide‐Flax Composites with Close to Maximum Stiffness at Low Fiber Content through Two‐Stage Annealing , 2021, Macromolecular Materials and Engineering.
[7] N. L. Thomas,et al. Co-continuous phase prediction in poly(lactic acid) /poly(caprolactone) blends from melt viscosity measurements , 2021 .
[8] K. Chrissafis,et al. Cold Crystallization Kinetics and Thermal Degradation of PLA Composites with Metal Oxide Nanofillers , 2021, Applied Sciences.
[9] J. Chevalier,et al. Nanomechanics serving polymer-based composite research , 2021 .
[10] T. Pardoen,et al. Enhanced fracture resistance of thermoset/thermoplastic interfaces through crack trapping in a morphology gradient , 2021 .
[11] Yongjin Li,et al. Stable Co-Continuous PLA/PBAT Blends Compatibilized by Interfacial Stereocomplex Crystallites: Toward Full Biodegradable Polymer Blends with Simultaneously Enhanced Mechanical Properties and Crystallization Rates , 2021, Macromolecules.
[12] Biao Yang,et al. A Review: Research Progress in Modification of Poly (Lactic Acid) by Lignin and Cellulose , 2021, Polymers.
[13] S. Shukla,et al. Circular fashion: Properties of fabrics made from mechanically recycled poly-ethylene terephthalate (PET) bottles , 2020, Resources, Conservation and Recycling.
[14] M. Jaafar,et al. A review on degradation mechanisms of polylactic acid: Hydrolytic, photodegradative, microbial, and enzymatic degradation , 2020 .
[15] Yanju Liu,et al. The compatibility of polylactic acid and polybutylene succinate blends by molecular and mesoscopic dynamics , 2020 .
[16] Andrea Lazzeri,et al. Thermo-Mechanical Properties of PLA/Short Flax Fiber Biocomposites , 2019, Applied Sciences.
[17] E. Ferraris,et al. Melt crystallization of PLA/Talc in fused filament fabrication , 2019, Materials & Design.
[18] R. Verduzco,et al. Tailoring the Attraction of Polymers toward Surfaces , 2019, Macromolecules.
[19] W. Gong,et al. Effects of zinc acetate and cucurbit[6]uril on PP composites: crystallization behavior, foaming performance and mechanical properties , 2018, e-Polymers.
[20] M. Misra,et al. Biobased Poly(ethylene terephthalate)/Poly(lactic acid) Blends Tailored with Epoxide Compatibilizers , 2018, ACS omega.
[21] K. Acker,et al. Impact of Bio-Based Plastics on Current Recycling of Plastics , 2018 .
[22] Haimu Ye,et al. Distinctive Tensile Properties of the Blends of Poly(l-lactic acid) (PLLA) and Poly(butylene succinate) (PBS) , 2018, Journal of Polymers and the Environment.
[23] O. Ghita,et al. Studies on the thermal and mechanical behavior of PLA‐PET blends , 2016 .
[24] S. Ahmad,et al. Poly(lactic acid) / Poly(ethylene glycol) blends: Mechanical, thermal and morphological properties , 2016 .
[25] A. Torres-Huerta,et al. Comparative assessment of miscibility and degradability on PET/PLA and PET/chitosan blends , 2014 .
[26] Elena P. Ivanova,et al. Plastic Degradation and Its Environmental Implications with Special Reference to Poly(ethylene terephthalate) , 2012 .
[27] Igor Sokolov,et al. Quantitative mapping of the elastic modulus of soft materials with HarmoniX and PeakForce QNM AFM modes. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[28] J. Llorca,et al. Determination of the mechanical properties of amorphous materials through instrumented nanoindentation , 2012 .
[29] A. Bourmaud,et al. Investigations on mechanical properties of poly(propylene) and poly(lactic acid) reinforced by miscanthus fibers , 2008 .
[30] Long Yu,et al. Polymer blends and composites from renewable resources , 2006 .
[31] Susan Selke,et al. Mechanical, Physical, and Barrier Properties of Poly(Lactide) Films , 2003 .
[32] M. S. Farahat,et al. Modified unsaturated polyester resins synthesized from poly(ethylene terephthalate) waste, 1. Synthesis and curing characteristics , 2000 .
[33] Y. Mai,et al. Fracture toughness and fracture mechanisms of polybutylene-terephthalate/polycarbonate/ impact-modifier blends , 1994, Journal of Materials Science.
[34] M. Corredig,et al. Chemical testing of mechanically recycled polyethylene terephthalate for food packaging in the European Union , 2022, Resources, Conservation and Recycling.
[35] Krishanu Ghosal,et al. Recent Advances in Chemical Recycling of Polyethylene Terephthalate Waste into Value Added Products for Sustainable Coating Solutions- Hope Vs Hype , 2022, Materials Advances.