首页> 外文期刊>ACS Omega >Improvement of the Gas Barrier Properties of PLA/OMMT Films by Regulating the Interlayer Spacing of OMMT and the Crystallinity of PLA
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Improvement of the Gas Barrier Properties of PLA/OMMT Films by Regulating the Interlayer Spacing of OMMT and the Crystallinity of PLA

机译:通过调节OMMT和PLA结晶度的层间间距来改善PLA / OMMT薄膜的阻气性能

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A high gas barrier performance should be ensured in case of biodegradable packing applications. However, the gas barrier properties of the biodegradable poly(lactic acid) (PLA) are not much effective. Nanocomposites can provide innovative solutions to enhance the barrier performance. In this study, different weight percentages of organically modified montmorillonite (OMMT) (0, 2, 4, 6, 8, and 10 wt %)-incorporated PLA/OMMT nanocomposites were prepared by melt mixing. Ethylene glycol diglycidyl ether (EGDE) was used to regulate the interlayer spacing of OMMT and increase the PLA crystallinity to further improve the gas barrier performance of the PLA/OMMT films. The crystallinity of PLA was significantly improved because EGDE-modified OMMT served as an efficient nucleating agent. The PLA/EGDE/OMMT films demonstrated a unique structure such that the adjacent OMMT layers were linked through the PLA crystals that serve as a bridge with respect to the spaces between the OMMT layers. The O_(2) permeability of the PLA/EGDE4/OMMT-6 film decreased by approximately 79% when compared with that of the neat PLA film. X-ray diffraction and differential scanning calorimetry analyses denoted that the reduced oxygen permeability of the PLA/EGDE4/OMMT-6 film can be primarily attributed to the high crystallinity of the PLA matrix and the bridging effect of the PLA crystals between two adjacent layers. Based on the experimental results, the relation between the relative permeability and vol % OMMT is in good agreement with that of the predicted values obtained using the Bharadwaj model when S = 0. The added EGDE weakened the thermal stability and tensile strength, mainly because of degradation of the hydroxyl groups of EGDE formed by epoxy ring opening, and these hydroxyl groups can promote PLA matrix degradation. However, the practical application temperature of the packaging film is considerably lower than the thermal decomposition temperature; therefore, the reduction of the thermal decomposition temperature does not affect the use of the packaging film.
机译:在可生物降解的包装应用的情况下,应确保高气体阻挡性能。然而,可生物降解的聚(乳酸)(PLA)的阻气性质并不多有效。纳米复合材料可以提供创新的解决方案,以提高屏障性能。在该研究中,通过熔融混合制备不同重量百分比的有机改性的蒙脱石(OMMT)(0,2,4,6,8和10wt%) - 掺入的PLA / OMMT纳米复合材料。使用乙二醇二缩水甘油醚(EGDE)调节OMMT的层间间距,增加PLA结晶度,进一步改善PLA / OMMT薄膜的气体阻挡性能。 PLA的结晶度显着提高,因为EGDE改性OMMT用作有效的成核剂。 PLA / EGDE / OMMT膜的展示是一种独特的结构,使得相邻的OMMT层通过PLA晶体连接,该PLA晶体用作相对于OMMT层之间的空间的桥梁。与纯PLA膜相比,PLA / EGDE4 / OMMT-6膜的O_(2)渗透率降低约79%。 X射线衍射和差示扫描量热法分析表示PLA / EGDE4 / OMMT-6膜的降低的氧气渗透性主要归因于PLA矩阵的高结晶度和两个相邻层之间的PLA晶体的桥接效果。基于实验结果,相对渗透性和Vol%OMMT之间的关系与使用BHARADWAJ模型获得的预测值之间的关系良好,当 S = 0时,添加的EGDE削弱了热稳定性和拉伸强度,主要是因为通过环氧开环形成的EGDE的羟基的降解,并且这些羟基可以促进PLA基质降解。然而,包装膜的实际应用温度远低于热分解温度;因此,热分解温度的降低不影响包装膜的使用。

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