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首页> 外文期刊>Chemical engineering journal >Chitin nanocrystals and nanofibers as nano-sized fillers into thermoplastic starch-based biocomposites processed by melt-mixing
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Chitin nanocrystals and nanofibers as nano-sized fillers into thermoplastic starch-based biocomposites processed by melt-mixing

机译:几丁质纳米晶体和纳米纤维作为纳米尺寸的填料,通过熔融混合加工成热塑性淀粉基生物复合材料

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摘要

Chitin nano-size fillers, i.e. nanocrystals (CHNC) and nanofibers (CHNF), were incorporated in thermoplastic starch matrix via melt-mixing. The two types of thermoplastic starch-based nano-biocomposites (S/CHNC and S/CHNF) were characterized and compared in terms of morphology, chemical and crystal structure, thermal and mechanical properties, and water resistance. In general, all thermoplastic starch-based nano-biocomposites showed better thermal stability, mechanical properties, and storage modulus than thermoplastic starch matrix without chitin nano-size fillers. This can be linked to the good dispersion of the nano-size fillers in the matrix, resulting from their chemical similarity, and also to the strong nano-size fillers-matrix adhesion by hydrogen bonding interactions. The results showed that the final properties of the nano-biocomposites were dependent of the concentration and type of chitin nano-size filler introduced in the thermoplastic starch matrix. In general, the thermoplastic starch-based nano-biocomposites prepared with chitin nanofibers showed better thermal and mechanical properties and storage modulus than those prepared with chitin nanocrystals.
机译:通过熔融混合将几丁质纳米级填料,即纳米晶体(CHNC)和纳米纤维(CHNF)掺入热塑性淀粉基体中。表征并比较了两种类型的热塑性淀粉基纳米生物复合材料(S / CHNC和S / CHNF)的形态,化学和晶体结构,热和机械性能以及耐水性。通常,所有热塑性淀粉基纳米生物复合材料的热稳定性,机械性能和储能模量均高于不含甲壳质纳米尺寸填料的热塑性淀粉基体。这可以归因于纳米级填料在基体中的良好分散性,这归因于它们的化学相似性,还可以归因于通过氢键相互作用产生的纳米级填料与基体的牢固粘合。结果表明,纳米生物复合材料的最终性能取决于引入热塑性淀粉基质中的几丁质纳米级填料的浓度和类型。通常,用几丁质纳米纤维制备的热塑性淀粉基纳米生物复合材料比用几丁质纳米晶体制备的热塑性和淀粉基纳米生物复合材料具有更好的热,机械性能和储能模量。

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