Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Development of Biobased Poly(Lactic Acid)/Epoxidized Natural Rubber Blends Processed by Electrospinning: Morphological, Structural and Thermal Properties"
written by Jaqueline G. L. Cosme, Vanessa M. Silva, Regina R. C. Nunes, Paulo H. S. Picciani,
published by Materials Sciences and Applications, Vol.7 No.4, 2016
has been cited by the following article(s):
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[1] Enhancing the endogenous triboelectricity of a polylactic acid nanofiber film by controlling the MXene content and distribution
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[2] Modified Poly (Lactic Acid) Epoxy Resin Using Chitosan for Reactive Blending with Epoxidized Natural Rubber: Analysis of Annealing Time
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[3] Wettability tuning of natural rubber/polyvinylpyrrolidone electrospun nonwoven mats
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[4] Synthesis and characterisation of electrospun natural rubber latex/polyvinyl alcohol for application in aqueous processes
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[7] Electrospun natural rubber latex biocomposite for scaffolds in tissue engineering
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[8] Toughness improvement in bio-based poly (lactic acid)/epoxidized natural rubber blend reinforced with nanosized silica
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[9] Electrospun biopolymer-based hybrid composites
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[10] Innovative Bio-based Poly (Lactic Acid)/Poly (Alkylene Furanoate) s Fiber Blends for Sustainable Textile Applications
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[11] PREPARATION AND CHARACTERIZATION OF POLYLACTIDE AND NATURAL RUBBER BASED COMPOSITES WITH IMPROVED IMPACT RESISTANCE.
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[12] Efeito da irradiação UV sobre a blenda polimérica de Poli (ácido lático-co-ácido glicólico)/Poliisopreno epoxidado
2021
[13] Obtenção e caracterização de microfibras de borracha natural incorporadas com negro de fumo
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[14] Electrospun natural rubber fibers-based flexible conductive membranes
2020
[15] Efeitos dos parâmetros de obtenção de fibras de Cellprene® epoxidado por electrospinning
2019
[16] Influence of temperature on high molecular weight poly (lactic acid) stereocomplex formation
2019
[17] An overview of toughening polylactic acid by an elastomer
2019
[18] Developing Polyaniline Filled Isoprene Composite Fibers by Electrospinning: Effect of Filler Concentration on the Morphology and Glass Transition
2019
[19] Effect of Modified Natural Rubber on Morphology, Chemical Structure, and Crystallinity of Electrospun Polyvinylidene Difluoride Nanofibers
2019
[20] Piezoelectric Ultrafine Fibers for Bone and Neural Tissue Engineering
2019
[21] Polylactic acid/epoxidized natural rubber biofoams: modelling and water absorption
2019
[22] Cable Electrode System for AC Electrospinning Technology
2019
[23] Carvacrol loaded electrospun fibrous films from zein and poly (lactic acid) for active food packaging
Food Hydrocolloids, 2018
[24] Electrospinning of Hydrogels for Biomedical Applications
Hydrogels, 2018
[25] Epoxy Resins Toughened with Surface Modified Epoxidized Natural Rubber Fibers by One-Step Electrospinning
Materials, 2017
[26] Identifying and Reducing Variability, Improving Scaffold Morphology, and Investigating Alternative Materials for the Blood Vessel Mimic Lab Electrospinning …
2017
[27] Fibres from blends of epoxidized natural rubber and polylactic acid by the electrospinning process: Compatibilization and surface texture.
European Polymer Journal, 2016
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