Baimark Yodthong, Srihanam Prasong, Srisuwan Yaowalak, Phromsopha Theeraphol
Biodegradable Polymers Research Unit, Department of Chemistry and Centre of Excellence for Innovation in Chemistry, Faculty of Science, Mahasarakham University, Mahasarakham 44150, Thailand.
Polymers (Basel). 2022 Sep 29;14(19):4092. doi: 10.3390/polym14194092.
High-molecular-weight poly(-lactide) (HMW-PLLA) is a promising candidate for use as a bioplastic because of its biodegradability and compostability. However, the applications of HMW-PLLA have been limited due to its poor crystallizability. In this work, stereocomplex polylactide (scPLA) powder was prepared by precipitation of a low-molecular-weight poly(-lactide)/poly(-lactide) (LMW-PLLA/LMW-PDLA) blend solution and investigated for use as a fully-biodegradable nucleating agent for HMW-PLLA compared to LMW-PLLA powder. The obtained LMW-PLLA and scPLA powders with a nearly spherical shape showed complete homo- and stereocomplex crystallites, respectively. HMW-PLLA/LMW-PLLA powder and HMW-PLLA/scPLA powder blends were prepared by melt blending. The LMW-PLLA powder was homogeneously melted in the HMW-PLLA matrices, whereas the scPLA powder had good phase compatibility and was well-dispersed in the HMW-PLLA matrices, as detected by scanning electron microscopy (SEM). It was shown that the enthalpies of crystallization (Δ) upon cooling scans for HMW-PLLA largely increased and the half crystallization time () dramatically decreased as the scPLA powder content increased; however, the LMW-PLLA powder did not exhibit the same behavior, as determined by differential scanning calorimetry (DSC). The crystallinity content of the HMW-PLLA/scPLA powder blends significantly increased as the scPLA powder content increased, as determined by DSC and X-ray diffractometry (XRD). In conclusion, the fully biodegradable scPLA powder showed good potential for use as an effective nucleating agent to improve the crystallization properties of the HMW-PLLA bioplastic.
高分子量聚(-丙交酯)(HMW-PLLA)因其生物可降解性和可堆肥性,是一种很有前途的生物塑料候选材料。然而,由于其结晶性较差,HMW-PLLA的应用受到了限制。在本研究中,通过沉淀低分子量聚(-丙交酯)/聚(-丙交酯)(LMW-PLLA/LMW-PDLA)共混溶液制备了立体复合聚乳酸(scPLA)粉末,并与LMW-PLLA粉末相比,研究了其作为HMW-PLLA的全生物可降解成核剂的用途。所获得的具有近似球形的LMW-PLLA和scPLA粉末分别显示出完全的均相和立体复合微晶。通过熔融共混制备了HMW-PLLA/LMW-PLLA粉末和HMW-PLLA/scPLA粉末共混物。通过扫描电子显微镜(SEM)检测发现,LMW-PLLA粉末在HMW-PLLA基体中均匀熔融,而scPLA粉末具有良好的相相容性,并在HMW-PLLA基体中良好分散。差示扫描量热法(DSC)测定结果表明,随着scPLA粉末含量的增加,HMW-PLLA冷却扫描时的结晶焓(Δ)大幅增加,半结晶时间()显著缩短;然而,LMW-PLLA粉末未表现出相同的行为。DSC和X射线衍射法(XRD)测定结果表明,随着scPLA粉末含量的增加,HMW-PLLA/scPLA粉末共混物的结晶度显著提高。总之,全生物可降解的scPLA粉末作为一种有效的成核剂,在改善HMW-PLLA生物塑料的结晶性能方面显示出良好的潜力。