Synthesis and properties of novel star-shaped polyesters based on l-lactide and castor oil
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Ristić, Ivan S.Marinović-Cincović, Milena
Cakić, Suzana M.
Tanasic, Ljiljana M.
Budinski-Simendić, Jaroslava K.
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The topology of biodegradable polyesters can be adjusted by incorporating multifunctional polyols into the polyester backbone to obtain branched polymers. The aim of this study was to prepare the biodegradable-branched polyester polyols based on l-lactide and castor oil using the trifluoromethanesulfonic acid as a catalyst. FTIR and H-1 NMR spectroscopy measurements were used to estimate the molecular structure of the novel materials. The polyester polyol was synthesized by core-first method which involves a polymerization of l-lactide by using a castor oil as multifunctional initiator. Molar masses estimated by gel permeation chromatography and vapor pressure osmometry were in good correlation with calculated values based on hydroxyl number of obtained polymers. DSC measurements confirmed high crystallinity degree of the synthesized material. It was assessed that the molar masses of obtained polymers-influenced glass transition temperature significantly. The thermal stability was inve...stigated by TG analysis, and the results have shown the dependence of weight loss on the arm length of the star-shaped polyesters. The thermal stability of star-shaped polyesters significantly decreased with degradation of polyester polyol obtained in acid solution.
Keywords:
Star-shaped polyester / Poly(lactide) / Cationic polymerization / Thermal propertiesSource:
Polymer Bulletin, 2013, 70, 6, 1723-1738Funding / projects:
- Materials of Reduced Dimensions for Efficient Light Harvesting and Energy conversion (RS-MESTD-Integrated and Interdisciplinary Research (IIR or III)-45020)
- Multiscale structuring of polymer nanocomposites and functional materials based on different precursors (RS-MESTD-Integrated and Interdisciplinary Research (IIR or III)-45022)
DOI: 10.1007/s00289-013-0917-0
ISSN: 0170-0839; 1436-2449
WoS: 000318712500001
Scopus: 2-s2.0-84892957650
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VinčaTY - JOUR AU - Ristić, Ivan S. AU - Marinović-Cincović, Milena AU - Cakić, Suzana M. AU - Tanasic, Ljiljana M. AU - Budinski-Simendić, Jaroslava K. PY - 2013 UR - https://vinar.vin.bg.ac.rs/handle/123456789/5503 AB - The topology of biodegradable polyesters can be adjusted by incorporating multifunctional polyols into the polyester backbone to obtain branched polymers. The aim of this study was to prepare the biodegradable-branched polyester polyols based on l-lactide and castor oil using the trifluoromethanesulfonic acid as a catalyst. FTIR and H-1 NMR spectroscopy measurements were used to estimate the molecular structure of the novel materials. The polyester polyol was synthesized by core-first method which involves a polymerization of l-lactide by using a castor oil as multifunctional initiator. Molar masses estimated by gel permeation chromatography and vapor pressure osmometry were in good correlation with calculated values based on hydroxyl number of obtained polymers. DSC measurements confirmed high crystallinity degree of the synthesized material. It was assessed that the molar masses of obtained polymers-influenced glass transition temperature significantly. The thermal stability was investigated by TG analysis, and the results have shown the dependence of weight loss on the arm length of the star-shaped polyesters. The thermal stability of star-shaped polyesters significantly decreased with degradation of polyester polyol obtained in acid solution. T2 - Polymer Bulletin T1 - Synthesis and properties of novel star-shaped polyesters based on l-lactide and castor oil VL - 70 IS - 6 SP - 1723 EP - 1738 DO - 10.1007/s00289-013-0917-0 ER -
@article{ author = "Ristić, Ivan S. and Marinović-Cincović, Milena and Cakić, Suzana M. and Tanasic, Ljiljana M. and Budinski-Simendić, Jaroslava K.", year = "2013", abstract = "The topology of biodegradable polyesters can be adjusted by incorporating multifunctional polyols into the polyester backbone to obtain branched polymers. The aim of this study was to prepare the biodegradable-branched polyester polyols based on l-lactide and castor oil using the trifluoromethanesulfonic acid as a catalyst. FTIR and H-1 NMR spectroscopy measurements were used to estimate the molecular structure of the novel materials. The polyester polyol was synthesized by core-first method which involves a polymerization of l-lactide by using a castor oil as multifunctional initiator. Molar masses estimated by gel permeation chromatography and vapor pressure osmometry were in good correlation with calculated values based on hydroxyl number of obtained polymers. DSC measurements confirmed high crystallinity degree of the synthesized material. It was assessed that the molar masses of obtained polymers-influenced glass transition temperature significantly. The thermal stability was investigated by TG analysis, and the results have shown the dependence of weight loss on the arm length of the star-shaped polyesters. The thermal stability of star-shaped polyesters significantly decreased with degradation of polyester polyol obtained in acid solution.", journal = "Polymer Bulletin", title = "Synthesis and properties of novel star-shaped polyesters based on l-lactide and castor oil", volume = "70", number = "6", pages = "1723-1738", doi = "10.1007/s00289-013-0917-0" }
Ristić, I. S., Marinović-Cincović, M., Cakić, S. M., Tanasic, L. M.,& Budinski-Simendić, J. K.. (2013). Synthesis and properties of novel star-shaped polyesters based on l-lactide and castor oil. in Polymer Bulletin, 70(6), 1723-1738. https://doi.org/10.1007/s00289-013-0917-0
Ristić IS, Marinović-Cincović M, Cakić SM, Tanasic LM, Budinski-Simendić JK. Synthesis and properties of novel star-shaped polyesters based on l-lactide and castor oil. in Polymer Bulletin. 2013;70(6):1723-1738. doi:10.1007/s00289-013-0917-0 .
Ristić, Ivan S., Marinović-Cincović, Milena, Cakić, Suzana M., Tanasic, Ljiljana M., Budinski-Simendić, Jaroslava K., "Synthesis and properties of novel star-shaped polyesters based on l-lactide and castor oil" in Polymer Bulletin, 70, no. 6 (2013):1723-1738, https://doi.org/10.1007/s00289-013-0917-0 . .