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基于聚乳酸(PLA)和SBA - 15的复合材料:介孔二氧化硅对热稳定性以及从玻璃态或熔融态等温结晶的影响。

Composites Based on Poly(Lactic Acid) (PLA) and SBA-15: Effect of Mesoporous Silica on Thermal Stability and on Isothermal Crystallization from Either Glass or Molten State.

作者信息

Díez-Rodríguez Tamara M, Blázquez-Blázquez Enrique, Pérez Ernesto, Cerrada María L

机构信息

Instituto de Ciencia y Tecnología de Polímeros (ICTP-CSIC), Juan de la Cierva 3, 28006 Madrid, Spain.

出版信息

Polymers (Basel). 2020 Nov 19;12(11):2743. doi: 10.3390/polym12112743.

Abstract

Several composites based on an -rich poly(lactic acid) (PLA) with different contents of mesoporous Santa Barbara Amorphous (SBA-15) silica were prepared in order to evaluate the effect of the mesoporous silica on the resultant PLA materials by examining morphological aspects, changes in PLA phases and their transitions, and, primarily, the influence on some final properties. Melt extrusion was chosen for the obtainment of the composites, followed by quenching from the melt to prepare films. Completely amorphous samples were then attained, as deduced from X-ray diffraction and differential scanning calorimetry (DSC) analyses. Thermogravimetric analysis (TGA) results demonstrated that the presence of SBA-15 particles in the PLA matrix did not exert any significant influence on the thermal decomposition of these composites. An important nucleation effect of the silica was found in PLA, especially under isothermal crystallization either from the melt or from its glassy state. As expected, isothermal crystallization from the glass was considerably faster than from the molten state, and these high differences were also responsible for a more considerable nucleating role of SBA-15 when crystallizing from the melt. It is remarkable that the PLA under analysis showed very close temperatures for cold crystallization and its subsequent melting. Moreover, the type of developed polymorphs did not accomplish the common rules previously described in the literature. Thus, all the isothermal experiments led to exclusive formation of the α modification, and the observation of the α' crystals required the annealing for long times at temperatures below 80 °C, as ascertained by both DSC and X-ray diffraction experiments. Finally, microhardness (MH) measurements indicated a competition between the PLA physical aging and the silica reinforcement effect in the as-processed amorphous films. Physical aging in the neat PLA was much more important than in the PLA matrix that constituted the composites. Accordingly, the MH trend with SBA-15 content was strongly dependent on aging times.

摘要

制备了几种基于富含α晶型聚乳酸(PLA)并含有不同含量介孔圣巴巴拉无定形(SBA - 15)二氧化硅的复合材料,通过研究形态学方面、PLA相的变化及其转变,以及主要研究对一些最终性能的影响,来评估介孔二氧化硅对所得PLA材料的作用。选择熔融挤出法来制备复合材料,随后从熔体中骤冷以制备薄膜。然后通过X射线衍射和差示扫描量热法(DSC)分析推断得到完全非晶态样品。热重分析(TGA)结果表明,PLA基体中SBA - 15颗粒的存在对这些复合材料的热分解没有产生任何显著影响。在PLA中发现二氧化硅具有重要的成核作用,特别是在从熔体或玻璃态进行等温结晶时。正如预期的那样,从玻璃态等温结晶比从熔融态快得多,并且这些巨大差异也导致SBA - 15在从熔体结晶时具有更显著的成核作用。值得注意的是,所分析的PLA显示出冷结晶及其随后熔化的温度非常接近。此外,所形成的多晶型物类型并不符合文献中先前描述的一般规律。因此,所有等温实验都导致仅形成α晶型,并且通过DSC和X射线衍射实验确定,观察到α'晶体需要在低于80℃的温度下长时间退火。最后,显微硬度(MH)测量表明,在加工后的非晶态薄膜中,PLA的物理老化与二氧化硅增强效应之间存在竞争。纯PLA中的物理老化比构成复合材料的PLA基体中的物理老化重要得多。因此,MH随SBA - 15含量的变化趋势强烈依赖于老化时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfa9/7699165/29ea9bae20c7/polymers-12-02743-g001.jpg

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