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首页> 外文期刊>Journal of Polymers and the Environment >Molecular Structure and Crystallization Dynamics of Poly(3- hydroxyl alkanoate) with Medium-Chain Length Biosynthesized from Pseudomonas putida
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Molecular Structure and Crystallization Dynamics of Poly(3- hydroxyl alkanoate) with Medium-Chain Length Biosynthesized from Pseudomonas putida

机译:恶臭假单胞菌生物合成中链长聚(3-羟基链烷酸酯)的分子结构和结晶动力学

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摘要

The molecular structure of poly(3-hydroxyalkanoate) (P3HA) with medium-chain length, biosynthesized from Psuedomonas putida (P. putida), was investigated by thermal analysis, X-ray diffraction, and infrared spectrum. Cultivation in a medium of nonanoic acid and a mixed substrate of nonanoic acid and glycerin as carbon sources provided P3HA with monomer units of 7 and 9 carbons (P3HA(n)) and 5, 6, 7, 8, 9, and 10 carbons (P3HA(mix)). Since these P3HA has comparatively long side chains, the crystallinity was as low as about 10%. It was suggested that the hydrogen bonding plays an important role in constructing the crystal. The lamellar thickness was 1.20 nm, estimated from the melting temperature depression. This lamellar thickness corresponds to two repeating units. Crystallinity depending on time was observed by the CO stretching mode in the infrared spectrum, and then Avrami's theory was applied to analyze the crystallization mechanism. The crystallization rate of P3HA(n) was very low, on the order of a few hours. An Avrami exponent of 1.45 was estimated from the slope of the Avrami plot. This shows that the conformational arrangement is presumably promoted along the chain axis. The slow crystallization is attributed to the long side chain, which prevents aggregation of the polymer chains.
机译:通过热分析,X射线衍射和红外光谱研究了由恶臭假单胞菌生物合成的中等链长的聚3-羟基链烷酸酯(P3HA)的分子结构。在壬酸以及壬酸和甘油的混合底物作为碳源的培养基中培养,为P3HA提供了7和9个碳原子(P3HA(n))和5、6、7、8、9和10个碳原子的单体单元(P3HA(n))。 P3HA(混合物))。由于这些P3HA具有相对长的侧链,因此结晶度低至约10%。有人认为氢键在构造晶体中起重要作用。由熔融温度降低估计的层状厚度为1.20nm。该层状厚度对应于两个重复单元。在红外光谱中通过CO拉伸模式观察了随时间变化的结晶度,然后将Avrami理论应用到结晶机理中。 P3HA(n)的结晶速率非常低,约为几个小时。根据Avrami图的斜率估算出1.45的Avrami指数。这表明大概沿链轴促进了构象排列。缓慢的结晶归因于长侧链,这防止了聚合物链的聚集。

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