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Extended Abstract

Mechanical and Thermal Properties of Blends Based on Polyhydroxyalkanoates †

by
Marius Stelian Popa
1,
Irina Lupescu
2,3,
Cristian Andi Nicolae
1,
Augusta Raluca Gabor
1,
Adriana Nicoleta Frone
1 and
Denis Mihaela Panaitescu
1,*
1
National Institute for Research & Development in Chemistry and Petrochemistry-ICECHIM, 202 Spl. Independenţei, 060021 Bucharest, Romania
2
National Institute for Chemical Pharmaceutical Research and Development ICCF, 112 Calea Vitan, 031299 Bucharest, Romania
3
Spiru Haret University, Faculty of Veterinary Medicine, 256 Basarabia Blvd., 030352 Bucharest, Romania
*
Author to whom correspondence should be addressed.
Presented at the 16th International Symposium “Priorities of Chemistry for a Sustainable Development” PRIOCHEM, Bucharest, Romania, 28–30 October 2020.
Proceedings 2020, 57(1), 38; https://doi.org/10.3390/proceedings2020057038
Published: 11 November 2020
Polyhydroxybutyrate (PHB) is a biodegradable and biocompatible thermoplastic polymer with good properties, similar to that of polypropylene, but with a higher price. In addition, it is very brittle and difficult to process by melting, which limits its usage [1,2,3]. To overcome these drawbacks, PHB is usually blended or copolymerized with other polymers [2,3]. In this study, PHB was blended with medium-chain-length polyhydroxyalkanoates (PHAs), which are elastomeric materials. For this purpose, two copolymers with different ratios of monomers, namely polyhydroxyoctanoate (PHO) and polyhydroxynonanoate (PHN), were added in 20 wt% in PHB using a melt processing technique. Neat PHB was purchased from Goodfellow; PHO, with a high fraction of C8, and PHN, with a high fraction of C9, were obtained by microbial biosynthesis. The PHB/20PHO and PHB/20PHN blends were obtained via melt mixing in a Brabender Labstation at 160 °C, for 8 min. The thermal characteristics of pristine PHB and blends were investigated via TGA and DSC, and thermomechanical characteristics via DMA. An increase in crystallinity was noticed in all the blends compared to plain PHB due to the nucleating effect of PHN and, especially PHO. A slight increase in the thermal stability was also observed in the blends due to the elastomeric nature of PHAs and improved processability. Moreover, the presence of longer side hydrocarbon chains in PHO and PHN increased the hydrophobicity of the blends (Figure 1). Importantly, the addition of elastomeric copolyesters in a concentration of up to 20% did not reduce the modulus of elasticity of PHB.
This study revealed the importance of modifying highly brittle PHB with elastomeric PHAs in order to improve both flexibility and melt processability. In addition, the effect of PHAs with different compositions was highlighted in this study.

Acknowledgments

This work was supported by a grant of the Romanian Ministry of Research and Innovation, UEFISCDI project number PN-III-P1-1.2-PCCDI-2017-0428 (40/2018-Napoli19) within PNCDI III.

References

  1. Kaplan, D.L. Biopolymers from Renewable Resources; Springer: Berlin, Gremany, 1998; ISBN 978-3540635673. [Google Scholar]
  2. Panaitescu, D.M.; Frone, A.N.; Chiulan, I.; Nicolae, C.A.; Trusca, R.; Ghiurea, M.; Gabor, A.R.; Mihailescu, M.; Casarica, A.; Lupescu, I. Role of bacterial cellulose and poly (3-hydroxyhexanoate-co-3 -hydroxyoctanoate) in poly (3-hydroxybutyrate) blends and composites. Cellulose 2018, 25, 5569–5591. [Google Scholar] [CrossRef]
  3. Lukasiewicz, B.; Basnett, P.; Nigmatullin, R.; Matharu, R.; Knowles, J.C.; Roy, I. Binary polyhydroxyalkanoate systems for soft tissue engineering. Acta Biomater. 2018, 71, 225–234. [Google Scholar] [CrossRef] [PubMed]
Figure 1. Water contact angles of polyhydroxybutyrate (PHB) and its blends.
Figure 1. Water contact angles of polyhydroxybutyrate (PHB) and its blends.
Proceedings 57 00038 g001
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MDPI and ACS Style

Popa, M.S.; Lupescu, I.; Nicolae, C.A.; Gabor, A.R.; Frone, A.N.; Panaitescu, D.M. Mechanical and Thermal Properties of Blends Based on Polyhydroxyalkanoates. Proceedings 2020, 57, 38. https://doi.org/10.3390/proceedings2020057038

AMA Style

Popa MS, Lupescu I, Nicolae CA, Gabor AR, Frone AN, Panaitescu DM. Mechanical and Thermal Properties of Blends Based on Polyhydroxyalkanoates. Proceedings. 2020; 57(1):38. https://doi.org/10.3390/proceedings2020057038

Chicago/Turabian Style

Popa, Marius Stelian, Irina Lupescu, Cristian Andi Nicolae, Augusta Raluca Gabor, Adriana Nicoleta Frone, and Denis Mihaela Panaitescu. 2020. "Mechanical and Thermal Properties of Blends Based on Polyhydroxyalkanoates" Proceedings 57, no. 1: 38. https://doi.org/10.3390/proceedings2020057038

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