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聚乳酸/改性阿拉伯胶(MG)基微孔复合泡沫:MG 对泡沫性能、热性能和结晶行为的影响。

Poly (lactic acid)/modified gum arabic (MG)based microcellular composite foam: Effect of MG on foam properties, thermal and crystallization behavior.

机构信息

Indian Institute of Technology Guwahati, Assam 781039, India.

Indian Institute of Technology Guwahati, Assam 781039, India.

出版信息

Int J Biol Macromol. 2019 Mar 15;125:159-170. doi: 10.1016/j.ijbiomac.2018.11.257. Epub 2018 Nov 28.

Abstract

The article demonstrates a simple and innocuous method for fabrication of poly (lactic acid) (PLA)/modified gum arabic (MG)based hydrophobic, microcellular, highly porous and interconnected composite foam. The observed density of the composite foams was remarkably reduced by ~86% in comparison to PLA granules. Further, there was noticed an increase in cell density and a decrease in cell size due to the addition of MG nanofiller. The thermogravimetric analysis (TGA) of developed foam showed no significant effect of MG in maximum degradation temperature (T). Dynamic mechanical analysis (DMA) and differential scanning calorimetry (DSC) investigations suggested the plasticizing effect of MG nanofiller in the PLA matrix. The hydrophobicity of fabricated foam was found to increase with an increase in loading of MG and an increment of ~20° in contact angle was observed for highest loading of MG (3%) in comparison to neat PLA foam. Further, an increase in the surface area up to ~60% and a decrease in pore diameter up to ~53% were observed for PLA/MG based foam by porosimetric investigations. Based on this investigation, the fabricated PLA/MG based foams have the potential for specialized applications as an alternative to non-degradable petro-based foams in various fields of life.

摘要

本文展示了一种简单无害的方法,用于制造聚乳酸(PLA)/改性阿拉伯胶(MG)基疏水性、微孔、高度多孔和相互连接的复合泡沫。与 PLA 颗粒相比,观察到复合泡沫的密度显著降低了约 86%。此外,由于添加了 MG 纳米填料,观察到细胞密度增加和细胞尺寸减小。所开发泡沫的热重分析(TGA)表明 MG 对最大降解温度(T)没有显著影响。动态力学分析(DMA)和差示扫描量热法(DSC)研究表明,MG 纳米填料在 PLA 基体中具有增塑作用。发现所制备的泡沫的疏水性随 MG 负载量的增加而增加,与纯 PLA 泡沫相比,MG 负载量最高(3%)时观察到接触角增加了约 20°。通过孔隙率研究还观察到,PLA/MG 基泡沫的表面积增加了约 60%,孔径减小了约 53%。基于这项研究,所制备的 PLA/MG 基泡沫具有作为各种生活领域中不可降解石油基泡沫的替代品的特殊应用潜力。

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