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Bio-Based PLA/PBS/PBAT Ternary Blends with Added Nanohydroxyapatite: A Thermal, Physical, and Mechanical Study. | LitMetric

AI Article Synopsis

  • The study explores the physical and mechanical properties of bio-based polymer blends made from PLA, PBS, and PBAT with varying amounts of nanohydroxyapatite (nHA), aimed at developing bone graft materials.
  • Two series of blends (A and B) were created with different PLA concentrations, and the samples were processed using a twin-screw extruder; various analyses (FTIR, XRD, DSC, SEM, TEM, TGA) were conducted to evaluate the blends.
  • Results indicate that the addition of nHA enhances the crystallinity, mechanical properties, and hydrophilicity of the blends, identifying promising formulations for bone graft applications.

Article Abstract

The physical and mechanical properties of novel bio-based polymer blends of polylactic acid (PLA), poly(butylene succinate) (PBS), and poly (butylene adipate-co-terephthalate) (PBAT) with various added amounts of nanohydroxyapatite (nHA) were investigated in this study. The formulations of PLA/PBS/PBAT/nHA blends were divided into two series, A and B, containing 70 or 80 wt% PLA, respectively. Samples of four specimens per series were prepared using a twin-screw extruder, and different amounts of nHA were added to meet the regeneration needs of bone graft materials. FTIR and XRD analyses were employed to identify the presence of each polymer and nHA in the various blends. The crystallization behavior of these blends was examined using DSC. Tensile and impact strength tests were performed on all samples to screen feasible formulations of polymer blends for bone graft material applications. Surface morphology analyses were conducted using SEM, and the dispersion of nHA particles in the blends was further tested using TEM. The added nHA also served as a nucleating agent aimed at improving the crystallinity and mechanical properties of the blends. Through the above analyses, the physical and mechanical properties of the polymer blends are reported and the most promising bone graft material formulations are suggested. All blends were tested for thermal degradation analysis using TGA and thermal stability was confirmed. The water absorption experiments carried out in this study showed that the addition of nHA could improve the hydrophilicity of the blends.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10708084PMC
http://dx.doi.org/10.3390/polym15234585DOI Listing

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