高分子
耐热性
成核
化学工程
化学
材料科学
高分子科学
有机化学
复合材料
生物化学
工程类
作者
Jiang Wang,Xin Meng,Weiguang Gong,Chenyang Li,Yichen Xu,Li Jiao,Pu Du,Zhong Xin
标识
DOI:10.1021/acs.iecr.4c02760
摘要
In this study, branched poly(lactic acid) (PLA) was synthesized through melt blending, which was blended with linear PLA (L-PLA) to enhance the crystallization. Nonisothermal and isothermal crystallization studies demonstrated that nucleated PLA exhibited a crystallization temperature and melt crystallinity of 119.0 °C and 48.0%, respectively, at the highest degree of entanglement of branched PLA (B-PLA). Following a simple annealing treatment, the Vicat softening temperature (VST) and heat deflection temperature (HDT) of nucleated PLA reached 157.2 and 94.3 °C, respectively. The presence of dipole interactions among molecular chain segments during the initial stages of nucleation was revealed via in situ infrared spectroscopy, which facilitated the adsorption of L-PLA onto B-PLA, thereby allowing branched segments to serve as nucleation sites for L-PLA. This comprehensive analysis elucidated the influence of B-PLA on the crystallization behavior of L-PLA and established a correlation between its degree of entanglement and nucleation efficacy. It could be concluded that nucleated PLA retains its biodegradability while demonstrating improved crystallization and heat resistance.
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