Yao Wenxin, Pan Siyu, Qiu Zhaobin
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
Polymers (Basel). 2024 Jun 19;16(12):1735. doi: 10.3390/polym16121735.
Biodegradable poly(butylene succinate--2-methyl succinate) (PBSMS)/cellulose nanocrystals (CNC) composites were successfully prepared at low CNC loadings with the aims of improving crystallization and mechanical properties and extending the practical application of PBSMS. CNC is finely dispersed in the PBSMS matrix without obvious aggregations. The low content of CNC obviously promoted the crystallization behavior of PBSMS under different conditions. The spherulitic morphology study revealed that CNC, as an effective heterogeneous nucleating agent, provided more nucleation sites during the melt crystallization process. In addition, the nucleation effect of CNC was quantitatively evaluated by the following two parameters, i.e., nucleation activity and nucleation efficiency. The crystal structure and crystallization mechanism of PBSMS remained unchanged in the composites. In addition, as a reinforcing nanofiller, CNC significantly increased Young's modulus and the yield strength of PBSMS. The crystallization behavior and mechanical properties of PBSMS were significantly improved by the low content of CNC, which should be interesting and essential from the perspective of biodegradable polymer composites.
通过低含量的纤维素纳米晶(CNC)成功制备了可生物降解的聚(丁二酸丁二醇酯-2-甲基琥珀酸酯)(PBSMS)/纤维素纳米晶(CNC)复合材料,旨在改善结晶和力学性能并扩展PBSMS的实际应用。CNC在PBSMS基体中均匀分散,无明显团聚。低含量的CNC在不同条件下显著促进了PBSMS的结晶行为。球晶形态研究表明,CNC作为有效的异质成核剂,在熔体结晶过程中提供了更多的成核位点。此外,通过成核活性和成核效率这两个参数对CNC的成核效果进行了定量评估。复合材料中PBSMS的晶体结构和结晶机理保持不变。此外,作为增强纳米填料,CNC显著提高了PBSMS的杨氏模量和屈服强度。低含量的CNC显著改善了PBSMS的结晶行为和力学性能,从可生物降解聚合物复合材料的角度来看,这一点很有趣且很重要。