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海泡石作为一种有前景的纳米粘土,用于基于淀粉和可生物降解聚酯的纳米生物复合材料。

Sepiolite as a promising nanoclay for nano-biocomposites based on starch and biodegradable polyester.

作者信息

Olivato J B, Marini J, Yamashita F, Pollet E, Grossmann M V E, Avérous L

机构信息

Departamento de Ciência e Tecnologia de Alimentos, Centro de Ciências Agrárias, Universidade Estadual de Londrina, PO Box 6001, 86051-980 Londrina, PR, Brazil; BioTeam/ICPEES-ECPM, UMR CNRS 7515, Université de Strasbourg, 25 rue Becquerel, 67087 Strasbourg Cedex 2, France.

Departamento de Engenharia de Materiais, Universidade Federal de São Carlos, São Carlos, Brazil.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Jan 1;70(Pt 1):296-302. doi: 10.1016/j.msec.2016.08.077. Epub 2016 Aug 31.

Abstract

The effects of sepiolite addition (0, 1, 3 and 5wt%) were evaluated on dynamic-mechanical behaviour, water uptake, thermal and optical properties of thermoplastic starch (TPS)/poly (butylene adipate-co-terephthalate) (PBAT) nano-biocomposites, with different TPS/PBAT (w/w) ratios and nanofiller contents. The results highlighted the improvement of the dynamic-mechanical behaviour with the addition of sepiolite, producing high performance materials. An increase of 25°C in the T of TPS was recorded by DMTA analysis at sepiolite content of 5wt%. The sepiolite influenced the crystallisation of nano-biocomposites, without causing interference in the crystal organisation, evidenced by DSC analysis. The addition of sepiolite nanoclay decreased the water adsorption rate and water adsorption capacity of the corresponding nano-biocomposites. For such multiphase systems, the successful use of natural sepiolite brought a clear benefit, without the need of any modifications or additional processes to produce advanced nano-biocomposites.

摘要

研究了添加不同含量(0、1、3和5wt%)海泡石对不同TPS/PBAT(w/w)比例和纳米填料含量的热塑性淀粉(TPS)/聚己二酸丁二醇酯-对苯二甲酸丁二醇酯共聚物(PBAT)纳米生物复合材料动态力学行为、吸水性、热性能和光学性能的影响。结果表明,添加海泡石可改善动态力学行为,制备出高性能材料。当海泡石含量为5wt%时,动态热机械分析(DMTA)显示TPS的玻璃化转变温度(Tg)提高了25°C。差示扫描量热分析(DSC)表明,海泡石影响纳米生物复合材料的结晶过程,但不干扰晶体结构。海泡石纳米粘土的添加降低了相应纳米生物复合材料的吸水速率和吸水能力。对于这种多相体系而言,天然海泡石的成功应用带来了显著优势,无需任何改性或额外工艺即可制备先进的纳米生物复合材料。

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