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原位合成细菌纤维素/PEO-b-PPO-b-PEO 生物复合材料的纳米和宏观结构及力学性能。

Nano- and macroscale structural and mechanical properties of in situ synthesized bacterial cellulose/PEO-b-PPO-b-PEO biocomposites.

机构信息

Group 'Materials + Technologies' (GMT), Department of Chemical and Environmental Engineering, Polytechnic School, University of the Basque Country (UPV/EHU) , Plaza Europa 1, 20018 Donostia-SanSebastián, Spain.

出版信息

ACS Appl Mater Interfaces. 2015 Feb 25;7(7):4142-50. doi: 10.1021/am508273x. Epub 2015 Feb 10.

Abstract

Highly transparent biocomposite based on bacterial cellulose (BC) mat modified with poly(ethylene oxide-b-propylene oxide-b-ethylene oxide) block copolymer (EPE) were fabricated in situ during biosynthesis of bacterial cellulose in a static culture from Gluconacetobacter xylinum. The effect of the addition to the culture medium of water-soluble EPE block copolymer on structure, morphology, crystallinity, and final properties of the novel biocomposites was investigated at nano- and macroscale. High compatibility between components was confirmed by ATR-FTIR indicating hydrogen bond formation between the OH group of BC and the PEO block of EPE block copolymer. Structural properties of EPE/BC biocomposites showed a strong effect of EPE block copolymer on the morphology of the BC mats. Thus, the increase of the EPE block copolymer content lead to the generation of spherulites of PEO block, clearly visualized using AFM and MO technique, changing crystallinity of the final EPE/BC biocomposites investigated by XRD. Generally, EPE/BC biocomposites maintain thermal stability and mechanical properties of the BC mat being 1 wt % EPE/BC biocomposite material with the best properties. Biosynthesis of EPE/BC composites open new strategy to the utilization of water-soluble block copolymers in the preparation of BC mat based biocomposites with tunable properties.

摘要

基于细菌纤维素 (BC) 垫的高透明生物复合材料,该垫经过修饰,添加了聚(氧化乙烯-氧化丙烯-氧化乙烯)嵌段共聚物(EPE),是在静态培养条件下,从木醋杆菌中生物合成细菌纤维素时原位生成的。研究了向培养基中添加水溶性 EPE 嵌段共聚物对新型生物复合材料的结构、形态、结晶度和最终性能的影响,在纳米和宏观尺度上进行了研究。ATR-FTIR 表明 BC 的 OH 基团与 EPE 嵌段共聚物的 PEO 嵌段之间形成氢键,证实了各组分之间的高相容性。EPE/BC 生物复合材料的结构特性表明 EPE 嵌段共聚物对 BC 垫的形态有很强的影响。因此,随着 EPE 嵌段共聚物含量的增加,导致 PEO 嵌段的球晶生成,使用 AFM 和 MO 技术可以清楚地观察到这一点,从而改变了 XRD 研究的最终 EPE/BC 生物复合材料的结晶度。一般来说,EPE/BC 生物复合材料保持了 BC 垫的热稳定性和力学性能,其中 1wt% EPE/BC 复合材料的性能最佳。EPE/BC 复合材料的生物合成为在制备具有可调性能的基于 BC 垫的生物复合材料时利用水溶性嵌段共聚物提供了新的策略。

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