Preparation of nylon 6/PLA blend nanofibers by needleless electrospinning

Maneerat Charoenchan, Tanapak Metanawin, Siripan Metanawin
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Abstract

The nylon 6/PLA blend nanofibers have been prepared for the first time by needleless electrospinning. The formic acid (FA) was found to be the co-solvent with dichloromethane (DCM) at a ratio of 3:1 for dissolving nylon 6/PLA blend. The nylon 6/PLA blend solutions in various ratios of PLA (8, 10, and 12 wt%) were studied to prepare nanofiber at the applied voltage range of 25 kV to 30 kV. The morphology images of the fibers were shown by scanning electron microscope (SEM). It was found that the average diameter of the nylon 6/PLA blend fibers became smaller as the applied voltage increased from 25 kV to 30 kV and as the PLA content increased from 8 to 12 wt%. The morphology of the fibers became finer with increasing the PLA content. The morphology of the nylon 6:PLA (20:10) nanofibers presented a smooth surface without the formation of beads with an average diameter of 157 nm at the applied voltage of 25 kV. The high PLA content (12 wt%) at a low applied voltage (25 kV) exhibited the bead formation. In contrast, the bead was formed at the medium PLA concentration (10 wt%) at the applied voltage of 30 kV. Therefore, the high PLA content (12 wt%) at a high applied voltage (30 kV) presented a ribbon-like nanofiber of nylon 6/PLA without bead formation. The particle size distribution obtained from SEM images of the nylon 6/PLA nanofiber was narrow at low PLA contents and became broader at higher PLA concentrations.
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用无针电纺丝法制备尼龙 6/PLA 混合物纳米纤维
首次采用无针电纺丝法制备了尼龙 6/PLA 混合物纳米纤维。研究发现,甲酸(FA)与二氯甲烷(DCM)以 3:1 的比例共溶尼龙 6/PLA 共混物。在 25 kV 至 30 kV 的电压范围内,研究了不同聚乳酸比例(8、10 和 12 wt%)的尼龙 6/PLA 混合物溶液,以制备纳米纤维。纤维的形态图像由扫描电子显微镜(SEM)显示。研究发现,随着施加电压从 25 kV 增加到 30 kV,以及聚乳酸含量从 8 wt% 增加到 12 wt%,尼龙 6/PLA 共混纤维的平均直径变小。随着聚乳酸含量的增加,纤维的形态也变得更细。在 25 kV 的电压下,尼龙 6:PLA (20:10) 纳米纤维的形态表面光滑,没有形成平均直径为 157 nm 的微珠。高聚乳酸含量(12 wt%)的纳米纤维在低电压(25 kV)下会形成珠状物。相比之下,中等聚乳酸浓度(10 wt%)的珠状物在 30 kV 的施加电压下形成。因此,高聚乳酸含量(12 wt%)的尼龙 6/PLA 纳米纤维在高施加电压(30 kV)下呈带状,没有形成珠状。通过扫描电镜图像获得的尼龙 6/PLA 纳米纤维的粒度分布在聚乳酸含量较低时较窄,而在聚乳酸含量较高时较宽。
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