首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >MISCIBILITY, THERMAL BEHAVIOUR AND MORPHOLOGICAL STRUCTURE OF POLY(3-HYDROXYBUTYRATE) AND ETHYL CELLULOSE BINARY BLENDS
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MISCIBILITY, THERMAL BEHAVIOUR AND MORPHOLOGICAL STRUCTURE OF POLY(3-HYDROXYBUTYRATE) AND ETHYL CELLULOSE BINARY BLENDS

机译:聚(3-羟基丁酸酯)和乙基纤维素二元混合物的混溶性,热行为和形态结构

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The miscibility, crystallization and melting behaviour, and phase morphology of poly(3-hydroxybutyrate) (PHB) and ethyl cellulose (EC) blends prepared by casting films have been studied by d.s.c., FTi.r., SEM and polarizing optical microscopy. The casting films of PHB/EC (60/40), (40/60) and (20/80) blends and annealed samples of the casting films of PHB/EC (86/20), (60/40), (40/60) and (20/80) blends showed composition-dependent glass transitions, the temperature position increased with the decrease of PHB content in the blends, and reached the maximum value for the EC component. After melt quenched or d.s.c. cooling run, only a lower glass transition temperature (T-g) corresponded to that of PHB phase in the blends was found in d.s.c. trace for each blends. The T-g remained almost unchanged at about 5 or 9 degrees C. The hydrogen bonding of hydroxyl groups of EC was proved stronger than that of the hydroxyl group in EC with carbonyl group in PHB. The absorption bands of hydroxyl groups in EC decreased with the increase of PHB content in the blends, while the absorption bands of carbonyl groups in PHB were independent of the blend composition at 1723-1724 cm(-1). Unlike the PHB component, the blends displayed no crystallization when cooled from the melt during the d.s.c. non-isothermal crystallization runs. The cold crystallization peaks of the blends were presented in the following d.s.c. heating runs. The growth of PHB spherulites was delayed by EC content. Both the temperature and the heat of the cold crystallization (T-cc and Delta H-cc) were dependent on the blend composition. Higher T-cc and Delta H-cc of PHB/EC (80/20) blend than those of PHB component and other blends were found due to the stronger interaction between two components at this ratio. The T-m and crystallinity (C-r) of PHB in the PHB/EC (80/20) blend are higher than those of pure PHB in most cases because of the higher T-cc. No evidence of phase separation of the blends was observed by SEM studies. (C) 1997 Elsevier Science Ltd. [References: 67]
机译:d.s.c.,FTi.r.,SEM和偏振光学显微镜研究了通过流延膜制备的聚(3-羟基丁酸酯)(PHB)和乙基纤维素(EC)混合物的混溶性,结晶和熔融行为以及相形态。 PHB / EC(60/40),(40/60)和(20/80)混合物的流延膜和PHB / EC(86/20),(60/40),(40 / 60)和(20/80)共混物显示出取决于成分的玻璃化转变,温度位置随共混物中PHB含量的降低而增加,并达到EC组分的最大值。熔融淬火或d.s.c.冷却过程中,在d.s.c中仅发现较低的玻璃化转变温度(T-g)与共混物中的PHB相相对应。跟踪每个混合。 T-g在约5或9℃下几乎保持不变。证明EC的羟基的氢键结强于EC中的PHB中的具有羰基的羟基。 EC中羟基的吸收带随共混物中PHB含量的增加而降低,而PHB中羰基的吸收带在1723-1724 cm(-1)处与共混物的组成无关。与PHB组分不同,共混物在d.s.c.中从熔体冷却时没有结晶。非等温结晶运行。共混物的冷结晶峰在以下d.s.c中给出。加热运行。 EC含量延迟了PHB球晶的生长。冷结晶的温度和热量(T-cc和Delta H-cc)均取决于共混物的组成。发现PHB / EC(80/20)共混物的T-cc和Delta H-cc比PHB组分和其他共混物更高,这是因为在此比例下两种组分之间的相互作用更强。在大多数情况下,由于T-cc较高,PHB / EC(80/20)共混物中PHB的T-m和结晶度(C-r)高于纯PHB。通过SEM研究未观察到共混物的相分离的证据。 (C)1997 Elsevier Science Ltd. [参考:67]

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