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Research Article

Preparation and Properties of Graft-Modified Bagasse Cellulose/Polylactic Acid Composites

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References

  • Abdelwahab, N. A., and N. Shukry. 2015. Synthesis, characterization and antimicrobial properties of grafted sugarcane bagasse/silver nanocomposites. Carbohydrate Polymers 115:276–14. doi:10.1016/j.carbpol.2014.08.052.
  • Cardil, A., M. Palenzuela, J. F. Vega, and M. E. G. Mosquera. 2022. Rheology of poly(glycidyl methacrylate) macromolecular nano assemblies. Polymers 14 (3):455. doi:10.3390/polym14030455.
  • de Souza Morais, D. D., C. B. Luna, E. B. Bezerra, D. C. de França, E. M. Araújo, E. P. Do Nascimento, A. D. de Oliveira, and T. J. de Mélo. 2022. Performance of poly(caprolactone) (pcl) as an impact modifier for polystyrene (ps): Effect of functionalized compatibilizers with maleic anhydride and glycidyl methacrylate. Sustainability 14 (15):9254. doi:10.3390/su14159254.
  • Du, S. 2018. Study on the synthesis and separation of glycidyl methacrylate. M.D diss., Tianjing University.
  • Fernández-Cervantes, I., M. A. Morales, R. Agustín-Serrano, M. Cardenas-García, P. V. Pérez-Luna, B. L. Arroyo-Reyes, and A. Maldonado-García. 2019. Polylactic acid/sodium alginate/hydroxyapatite composite scaffolds with trabecular tissue morphology designed by a bone remodeling model using 3d printing. Journal of Materials Science 54 (13):9478–96. doi:10.1007/s10853-019-03537-1.
  • Guo, L., A. Meng, L. Wang, J. Huang, X. Wang, H. Ren, H. Zhai, and M. Ek. 2020. Improving the compatibility, surface strength, and dimensional stability of cellulosic fibers using glycidyl methacrylate grafting. Journal of Materials Science 55 (27):12906–20. doi:10.1007/s10853-020-04932-9.
  • Han, S., Y. Li, M. He, and G. Tian. 2019. Advances in heat-resistant modification of poly(lactic acid)-based composites. Engineering Plastics Applications 47 (04):143–47. doi:10.1080/14658011.2018.1447338.
  • Han, X., L. Huang, Z. Wei, Y. Wang, H. Chen, C. Huang, and S. Su. 2021. Technology and mechanism of enhanced compatibilization of polylactic acid-grafted glycidyl methacrylate. Industrial Crops and Products 172:114065. doi:10.1016/j.indcrop.2021.114065.
  • Haneef, I. N. H. M., Y. F. Buys, N. M. Shaffiar, S. I. S. Shaharuddin, and M. K. Nor Khairusshima. 2019. Miscibility, mechanical, and thermal properties of polylactic acid/polypropylene carbonate (pla/ppc) blends prepared by melt-mixing method. Materials Today: Proceedings 17:534–42. doi:10.1016/j.matpr.2019.06.332.
  • Jamaluddin, N., Y. I. Hsu, T. A. Asoh, and H. Uyama. 2021. Effects of acid-anhydride-modified cellulose nanofiber on poly(lactic acid) composite films. Nanomaterials 11 (3):3. doi:10.3390/nano11030753.
  • Khan, B. A., H. Na, V. Chevali, P. Warner, J. Zhu, and H. Wang. 2018. Glycidyl methacrylate-compatibilized poly(lactic acid)/hemp hurd biocomposites: Processing, crystallization, and thermo-mechanical response. Journal of Materials Science & Technology 34 (2):387–97. doi:10.1016/j.jmst.2017.03.004.
  • Khan, M. A., S. M. Ashraf, and V. P. Malhotra. 2004. Development and characterization of a wood adhesive using bagasse lignin. International Journal of Adhesion and Adhesives 24 (6):485–93. doi:10.1016/j.ijadhadh.2004.01.003.
  • Klemm, D., B. Heublein, H. P. Fink, and A. Bohn. 2005. Cellulose: Fascinating biopolymer and sustainable raw material. Angewandte Chemie-International Edition 44 (22):3358–93. doi:10.1002/anie.200460587.
  • Lee, J. H., S. H. Park, and S. H. Kim. 2020. Surface alkylation of cellulose nanocrystals to enhance their compatibility with polylactide. Polymers 12 (1):1. doi:10.3390/polym12010178.
  • Li, G., M. Zhao, F. Xu, B. Yang, X. Li, X. Meng, L. Teng, F. Sun, and Y. Li. 2020. Synthesis and biological application of polylactic acid. Molecules 25 (21):5023. doi:10.3390/molecules25215023.
  • Liu, G., X. Zhang, and D. Wang. 2014. Tailoring crystallization: Towards high-performance poly(lactic acid). Advanced Materials 26 (40):6905–11. doi:10.1002/adma.201305413.
  • Maurel, A., M. Courty, B. Fleutot, H. Tortajada, K. Prashantha, M. Armand, S. Grugeon, S. Panier, and L. Dupont. 2018. Highly loaded graphite-polylactic acid composite-based filaments for lithium-ion battery three-dimensional printing. Chemistry of Materials 30 (21):7484–93. doi:10.1021/acs.chemmater.8b02062.
  • Meng, S., H. He, Y. Jia, P. Yu, B. Huang, and J. Chen. 2017. Effect of nanoparticles on the mechanical properties of acrylonitrile–butadiene–styrene specimens fabricated by fused deposition modeling. Journal of Applied Polymer Science 134 (7):7. doi:10.1002/app.44470.
  • Morão, A., and F. de Bie. 2019. Life cycle impact assessment of polylactic acid (pla) produced from sugarcane in thailand. Journal of Polymers and the Environment 27 (11):2523–39. doi:10.1007/s10924-019-01525-9.
  • Ngo, T. D., A. Kashani, G. Imbalzano, K. T. Q. Nguyen, and D. Hui. 2018. Additive manufacturing (3d printing): A review of materials, methods, applications and challenges. Composites Part B: Engineering 143:172–96. doi:10.1016/j.compositesb.2018.02.012.
  • Patra, S., and V. Young. 2016. A review of 3d printing techniques and the future in biofabrication of bioprinted tissue. Cell Biochemistry and Biophysics 74 (2):93–98. doi:10.1007/s12013-016-0730-0.
  • Pracella, M., D. Chionna, I. Anguillesi, Z. Kulinski, and E. Piorkowska. 2006. Functionalization, compatibilization and properties of polypropylene composites with hemp fibres. Composites Science and Technology 66 (13):2218–30. doi:10.1016/j.compscitech.2005.12.006.
  • Rahmayetty, S., B. Prasetya, and M. Gozan. 2017. Synthesis and characterization of l-lactide and polylactic acid (pla) from l-lactic acid for biomedical applications. In Biomedical engineering’s recent progress in biomaterials, drugs development, and medical devices, vol 1817. Aip conference proceedings, ed. Y. Whulanza, S. Supriadi, and M. Sahlan. February 21. doi:10.1063/1.4976761.
  • Robledo-Ortíz, J., M. González-López, A. Campo, L. Peponi, R. González-Nuez, D. Rodrigue, and A. Pérez-Fonseca. 2021. Fiber-matrix interface improvement via glycidyl methacrylate compatibilization for rotomolded poly(lactic acid)/agave fiber biocomposites. Journal of Composite Materials 55 (2):201–12. doi:10.1177/0021998320946821.
  • Rozman, H. D., R. N. Kumar, H. Khalil, A. Abusamah, R. Abu, and H. Ismail. 1997. Fibre activation with glycidyl methacrylate and subsequent copolymerization with diallyl phthalate. European Polymer Journal 33 (8):1213–18. doi:10.1016/s0014-3057(97)00008-6.
  • Rozman, H. D., M. J. Saad, and Z. A. M. Ishak. 2003. Flexural and impact properties of oil palm empty fruit bunch (efb)-polypropylene composites - the effect of maleic anhydride chemical modification of efb. Polymer Testing 22 (3):335–41. doi:10.1016/s0142-9418(02)00109-5.
  • Saeidlou, S., M. A. Huneault, H. Li, and C. B. Park. 2012. Poly(lactic acid) crystallization. Progress in Polymer Science 37 (12):1657–77. doi:10.1016/j.progpolymsci.2012.07.005.
  • Selvendran, R. R. 1987. Chemistry of plant cell walls and dietary fibre. Scandinavian Journal of Gastroenterology Supplement 22 (Sup129):33–41. doi:10.3109/00365528709095848.
  • Sharif, J., S. F. Mohamad, N. A. Fatimah Othman, N. A. Bakaruddin, H. N. Osman, and O. Güven. 2013. Graft copolymerization of glycidyl methacrylate onto delignified kenaf fibers through pre-irradiation technique. Radiation Physics and Chemistry 91:125–31. doi:10.1016/j.radphyschem.2013.05.035.
  • Tyagi, C., L. K. Tomar, and H. Singh. 2009. Surface modification of cellulose filter paper by glycidyl methacrylate grafting for biomolecule immobilization: Influence of grafting parameters and urease immobilization. Journal of Applied Polymer Science 111 (3):1381–90. doi:10.1002/app.28933.
  • Wambua, P., J. Ivens, and I. Verpoest. 2003. Natural fibres: Can they replace glass in fibre reinforced plastics? Composites Science and Technology 63 (9):1259–64. doi:10.1016/s0266-3538(03)00096-4.
  • Wang, B. Y. 2012. Research on interface modification technology and performance of wood- plastic composites. M. D. diss., Hangzhou Normal University.
  • Wang, J., H. Li, R. Liu, L. Li, Y. H. Lin, and C. W. Nan. 2018. Thermoelectric and mechanical properties of pla/bi0.5sb1.5te3 composite wires used for 3d printing. Composites Science and Technology 157:1–9. doi:10.1016/j.compscitech.2018.01.013.
  • Wang, L., Z. Zeng, and Y. Li. 2011. Green synthesis, characterization and thermal degradation kinetics analysis of pla/mmt-htcc nanocomposites. China Plastics 25 (06):42–48. doi:10.19491/j.issn.1001-9278.2011.06.009.
  • Wang, N., C. Zhang, and Y. Weng. 2021. Enhancing gas barrier performance of polylactic acid/lignin composite films through cooperative effect of compatibilization and nucleation. Journal of Applied Polymer Science 138 (15):50199. doi:10.1002/app.50199.
  • Wu, W., and F. Chen. 2020. Coupling agent-modified corn stalk cellulose/used rubber powder composites. Journal of Rubber Research 23 (3):237–43. doi:10.1007/s42464-020-00053-9.
  • Yang, H., Q. Chen, H. Zhao, H. Gu, J. Yan, and H. Lin. 2020. Study on preparation and performance of bagasse hollow cellulose membrane. Biomass Chemical Engineering 54 (02):6–14. doi:10.1016/j.ceramint.2018.07.063.
  • Yoo, D. K., D. Kim, and D. S. Lee. 2006. Synthesis of lactide from oligomeric pla: Effects of temperature, pressure, and catalyst. Macromolecular Research 14 (5):510–16. doi:10.1007/bf03218717.
  • Zhang, L., J. Liu, Y. You, Y. Liu, X. Sun, X. Tan, X. Pei, X. Luo, and Q. Li. 2019. Study on preparation of super absorbent resin from bagasse fiber. Journal of Sichuan University Natural Science Edition 56 (3):523–30.
  • Zhang, N., and J. Zhang. 2010. Recent progress in study of biomacromolecular material polylactic. Journal of Hebei Polytechnic University 32 (03):116–20.
  • Zhu, Z., M. Zhu, and Z. Wu. 2012. Pretreatment of sugarcane bagasse with nh4oh-h2o2 and ionic liquid for efficient hydrolysis and bioethanol production. Bioresource Technology 119:199–207. doi:10.1016/j.biortech.2012.05.111.