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Facile Route to Produce Chitin Nanofibers as Precursors for Flexible and Transparent Gas Barrier Materials

机译:生产几丁质纳米纤维作为柔性和透明阻气材料的前体的便捷途径

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摘要

Chitin is the second most abundant biopolymer in nature and has tremendous potential in renewable materials for packaging, energy storage, reinforced composites, and biomedical engineering. Despite attractive properties, including biodegradability, antibacterial activity, and high strength, chitin is not utilized widely due to strong molecular interactions, which make solubilization and processing difficult. We report a high pressure homogenization route to produce pure chitin nanofibers (ChNFs) starting with a mildly acidic aqueous dispersion of purified crab alpha-chitin. The well-dispersed ChNFs with diameter similar to 20 nm do not form strong network structures under conditions explored herein and can be directly processed into useful materials, bypassing the need to dissolve the chitin. Dried ChNFs form pure self-standing chitin films with the lowest to-date reported O-2 and CO2 permeabilities of 0.006 and 0.018 barrer, respectively. Combined with high flexibility and optical transparency, these materials are ideal candidates for sustainable barrier packaging.
机译:几丁质是自然界第二大的生物聚合物,在包装,储能,增强复合材料和生物医学工程等可再生材料方面具有巨大潜力。尽管几丁质具有吸引人的特性,包括可生物降解性,抗菌活性和高强度,但由于强烈的分子相互作用,几丁质并未得到广泛利用,这使得增溶和加工变得困难。我们报告了从纯净的螃蟹甲壳质的弱酸性水分散体开始,产生纯甲壳质纳米纤维(ChNFs)的高压均质化途径。直径近似于20 nm的分散良好的ChNF在本文探讨的条件下不会形成坚固的网络结构,可以直接加工成有用的材料,而无需溶解几丁质。干燥的ChNFs形成纯的自立壳质膜,迄今为止报道的O-2和CO2渗透率最低,分别为0.006和0.018 barrer。结合高柔韧性和光学透明度,这些材料是可持续阻隔包装的理想选择。

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