首页> 美国卫生研究院文献>Materials >Lamellae Evolution of Stereocomplex-Type Poly(Lactic Acid)/Organically-Modified Layered Zinc Phenylphosphonate Nanocomposites Induced by Isothermal Crystallization
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Lamellae Evolution of Stereocomplex-Type Poly(Lactic Acid)/Organically-Modified Layered Zinc Phenylphosphonate Nanocomposites Induced by Isothermal Crystallization

机译:等温结晶诱导的立体复合物型聚乳酸/有机改性层状苯膦酸锌纳米复合材料的薄片演化

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摘要

Stereocomplex-type poly(lactic acid) (SC-PLA)/oleylamine-modified layered zinc phenylphosphonate (SC-PLA/m-PPZn) nanocomposites are successfully fabricated using a solution mixing process. Wide-angle X-ray diffraction (WAXD) analysis reveals that the structural arrangement of the oleylamine-modified PPZn exhibits a large interlayer spacing of 30.3 Å. In addition, we investigate the temperature effect on the real-time structural arrangement of PPZn and m-PPZn. The results indicated that the lattice expansion of m-PPZn with increasing temperature leads to an increase in the interlayer spacing from 30.3 to 37.1 Å as the temperature increases from 30 to 150 °C. The interlayer spacing decreases slightly as the temperature further increases to 210 °C. This behavior might be attributed to interlayer oleylamine elimination, which results in hydrogen bonding destruction between the hydroxide sheets and water molecules. As the temperature reaches 240 °C, the in situ WAXD patterns show the coexistence of m-PPZn and PPZn. However, the layered structures of m-PPZn at 300 °C are almost the same as those of PPZn, after the complete degradation temperature of oleylamine. The morphology of the SC-PLA/m-PPZn nanocomposites characterized using WAXD and transmission electron microscopy (TEM) demonstrates that most partial delamination layered materials are randomly dispersed in the SC-PLA matrix. Small-angle X-ray scattering reveals that higher crystal layer thickness and lower surface free energy is achieved in 0.25 wt% SC-PLA/m-PPZn nanocomposites. These results indicate that the introduction of 0.25 wt% m-PPZn into SC-PLA reduces the surface free energy, thereby increasing the polymer chain mobility.
机译:使用溶液混合工艺成功地制备了立体复合物型聚乳酸(SC-PLA)/油胺改性的层状苯基磷酸锌(SC-PLA / m-PPZn)纳米复合材料。广角X射线衍射(WAXD)分析表明,油胺改性的PPZn的结构排列具有30.3Å的大层间距。此外,我们研究了温度对PPZn和m-PPZn实时结构排列的影响。结果表明,随着温度的升高,随着温度的升高,m-PPZn的晶格膨胀导致层间距从30.3升高至37.1Å。随着温度进一步升高到210°C,层间间距略有减小。此行为可能归因于层间油胺的消除,这导致了氢氧化物薄片和水分子之间的氢键破坏。当温度达到240°C时,原位WAXD模式显示m-PPZn和PPZn共存。然而,在油胺完全降解后,m-PPZn在300°C的层状结构几乎与PPZn的层状结构相同。使用WAXD和透射电子显微镜(TEM)表征的SC-PLA / m-PPZn纳米复合材料的形态表明,大部分分层的层状材料随机分散在SC-PLA基质中。小角度X射线散射表明,在0.25 wt%的SC-PLA / m-PPZn纳米复合材料中,可以获得更高的晶体层厚度和更低的表面自由能。这些结果表明,将0.25重量%的间-PPZn引入SC-PLA降低了表面自由能,从而增加了聚合物链的迁移率。

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