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首页> 外文期刊>Biomacromolecules >Solid-state microstructure of poly(L-lactide) and L-lactide/meso-lactide random copolymers by atomic force microscopy (AFM)
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Solid-state microstructure of poly(L-lactide) and L-lactide/meso-lactide random copolymers by atomic force microscopy (AFM)

机译:聚(L-丙交酯)和L-丙交酯/间-丙交酯无规共聚物的固态微观结构的原子力显微镜(AFM)

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摘要

Tapping mode atomic force microscopy was used to investigate the lamellar morphology of poly(L-lactide) and two poly(L-lactide-co-meso-lactide) random copolymers containing 3% and 6% meso-lactide.Samples were isothermally crystallized at selected temperatures,and qualitative and quantatively analyses of lamellar structure were performed using height and phase images.This is the first study of the morphology of polylactide stereocopolymers using a real-space probe,and theimportant effects of scanning parameters on the acquired images are described.More open spherulites with an abundance of screw disloctions between edge-on lamellar stacks were observedin samples crystalized at higher temperatures.Mean lamellar thicknesses are lower for the random copolymers compared to PLLA,particularly at lower DELTAT,in agreement with the results of our previous small-angle X-ray scattering (SAXS) experiments.Mean lamellar thicknesses derived from the current real-space examination are in good agreement with those determined previously from SAXS.Internal surfaces-from microtomed specimes-were also studied to investigate the bulk crystal morphology.Although quantitative analysis was not feasible (for reasons discussed in the text),lamellar organization similar to that seen in the surface experiments is observed at high magnifications.
机译:攻丝模式原子力显微镜用于研究聚(L-丙交酯)和两种含有3%和6%内消旋丙交酯的聚(L-丙交酯-共-内消旋丙交酯)无规共聚物的层状形态。选定的温度,并使用高度和相图进行层状结构的定性和定量分析。这是首次使用实空间探针研究聚丙交酯立体共聚物的形态,并描述了扫描参数对采集图像的重要影响。在较高温度下结晶的样品中观察到更多的开孔球状体,在边缘叠置的层状叠层之间有大量螺旋位移。与PLLA相比,无规共聚物的平均层状厚度要低,特别是在DELTAT较低的情况下,这与我们之前的小结果相符。角X射线散射(SAXS)实验。从当前的实际空间检查得出的平均层状厚度基本一致与以前由SAXS确定的结果进行了比较。还对内部表面(从切片样品中提取的样品)进行了研究,以研究块状晶体的形态。虽然不可行定量分析(由于本文讨论的原因),但层状组织类似于表面实验中看到的以高倍率观察到。

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