首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Effects of molten poly(3-hydroxybutyrate) on crystalline morphology in stereocomplex of poly(L-lactic acid) with poly(D-lactic acid)
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Effects of molten poly(3-hydroxybutyrate) on crystalline morphology in stereocomplex of poly(L-lactic acid) with poly(D-lactic acid)

机译:熔融聚(3-羟基丁酸酯)对聚(L-乳酸)与聚(D-乳酸)的立体复合物中晶体形态的影响

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摘要

Effects of poly(3-hydroxybutyrate) (PHB) on crystalline morphology of stereocomplexing capacity of poly(L- and D-lactic acid) (PLLA and PDLA) were studied by differential scanning calorimetry (DSC), polarizing-light optical microscopy (POM), atomic-force microscopy (AFM) and wide-angle X-ray diffraction (WAXD). When crystallized at high T_c (130 °C or above), morphology transition of stereocomplexed PLA (sc-PLA) occurs from original well-rounded Maltese-cross spherulites to dendritic form in blends of high PHB contents (50 wt.% or higher), where PHB acts as an amorphous species. Microscopy characterizations show that morphology of sc-PLA in PHB/sc-PLA blends crystallized at T_c = 170 °C no longer retain original complexed Maltese-cross well-rounded spherulites; instead, the spherulites are disintegrated and restructured into two types of dendrites: (1) edge-on feather-like dendrites (early growth) and (2) flat-on wedge-like crystal plates (later growth) by growing along different directions and exhibiting different optical brightness. The concentration and/or distribution of amorphous PHB at the crystal growth front, corresponding to variation of the slopes of spherulitic growth rates, is a factor resulting in alteration and restructuring of the sc-PLA spherulites in the blends. Despite of spherulite disintegration, WAXD result shows that these two PHB-induced dendrites still retain the original unit cells of complexes, and thus these two new dendrites are sc-PLA.
机译:用差示扫描量热法(DSC),偏光光学显微镜(POM)研究了聚(3-羟基丁酸)(PHB)对聚(L-和D-乳酸)(PLLA和PDLA)的立体复合能力的结晶形态的影响。 ),原子力显微镜(AFM)和广角X射线衍射(WAXD)。当在高T_c(130°C或更高)温度下结晶时,在高PHB含量(50 wt。%或更高)的混合物中,立体复合PLA(sc-PLA)的形态发生了转变,从原始的圆形的马耳他十字球转变为树状形态,其中PHB充当非晶态物质。显微镜表征表明,在T_c = 170°C结晶的PHB / sc-PLA共混物中,sc-PLA的形态不再保留原始的复杂的马耳他十字形圆球。相反,球晶分解并重组为两种类型的树枝状晶体:(1)沿边缘的羽毛状树枝状晶体(早期生长)和(2)通过沿不同方向生长的扁平状楔状晶体板(较晚的生长)和表现出不同的光学亮度非晶态PHB在晶体生长前沿的浓度和/或分布与球晶生长速率斜率的变化相对应,是导致共混物中sc-PLA球晶发生改变和重组的因素。尽管有球晶崩解,但WAXD结果表明,这两种PHB诱导的树突仍然保留了复合物的原始单位细胞,因此这两个新的树突为sc-PLA。

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