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首页> 外文期刊>Green chemistry >Transparent bionanocomposites with improved properties prepared from acetylated bacterial cellulose and poly(lactic acid) through a simple approach
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Transparent bionanocomposites with improved properties prepared from acetylated bacterial cellulose and poly(lactic acid) through a simple approach

机译:由乙酰化细菌纤维素和聚乳酸通过简单方法制备的具有改善性能的透明生物纳米复合材料

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摘要

The preparation and characterization of biocomposite materials with improved properties based on poly(lactic acid) (PLA) and bacterial cellulose, and, for comparative purposes, vegetal cellulose fibers, both in their pristine form or after acetylation, is reported. The composite materials were obtained through the simple and green mechanical compounding of a PLA matrix and bacterial cellulose nanofibrils (or vegetable fibers), and were characterized by TGA, DSC, tensile assays, DMA, SEM and water uptake. The bionanocomposites obtained from PLA and acetylated bacterial cellulose were particularly interesting, given the considerable improvement in thermal and mechanical properties, as evidenced by the significant increase in both elastic and Young moduli, and in the tensile strength (increments of about 100, 40 and 25%, respectively) at very low nanofiller loadings (up to 6%). These nanocomposites also showed low hygroscopicity and considerable transparency, features reported here for the first time.
机译:据报道,以聚乳酸(PLA)和细菌纤维素为基础,具有改进性能的生物复合材料的制备和表征,以及作为比较目的,是原始形式或乙酰化后的植物纤维素纤维。复合材料是通过PLA基质和细菌纤维素纳米原纤维(或植物纤维)的简单绿色机械配混而获得的,并通过TGA,DSC,拉伸测定,DMA,SEM和吸水率进行了表征。鉴于热和机械性能的显着改善,由PLA和乙酰化细菌纤维素制得的生物纳米复合材料特别有趣,这可以通过弹性模量和杨氏模量以及抗张强度(分别增加约100、40和25)显着证明。分别以非常低的纳米填料含量(最高6%)填充。这些纳米复合材料还显示出低吸湿性和相当大的透明度,这是本文首次报道的特征。

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