Preparation and Characterization of the Blended Film from Silk Fibroin and Regenerated Cellulose Fiber Residue

Laksanawadee Saikhao, P. Suwanruji, Suesat Jantip, Sae Be Porntip
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引用次数: 2

Abstract

This research studied the preparation of the blended film from Bombyx mori silk fibroin with the regenerated cellulose obtained from rayon fiber residue, the industrial waste fiber. The β-sheet structure of silk fibroin was observed while the regenerated cellulose possessed cellulose II crystalline form. The infrared spectra of the blends showed changes in shape and intensity of IR absorption frequency characteristics in the region of 3500-3300 cm-1 as compared with those of the starting materials, pure silk fibroin and cellulose. This indicates the occurrence of the intermolecular interactions between the –OH groups of cellulose and silk fibroin by forming hydrogen bond. The tensile properties of the blends with cellulose content lower than 50 % could not be measured due to the weakness of the prepared film. The stronger and more flexible film was obtained with increasing the regenerated cellulose content. The study on the effect of NaCl and CaCl2 salt addition aiming to establish a porous structure to the blends was also investigated.
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丝素与再生纤维素纤维渣共混膜的制备与表征
以工业废纤维人造丝渣为原料,利用再生纤维素制备家蚕丝素共混膜。观察到丝素蛋白的β-片状结构,再生纤维素具有纤维素II型结晶形态。红外光谱结果表明,与原料纯丝素和纤维素相比,共混物的红外吸收频率特征在3500 ~ 3300 cm-1范围内的形状和强度发生了变化。这表明纤维素-OH基团与丝素蛋白之间通过形成氢键发生分子间相互作用。纤维素含量低于50%的共混物的拉伸性能由于制备的薄膜较弱而无法测量。随着再生纤维素含量的增加,膜的强度增大,柔韧性增强。研究了NaCl和CaCl2的加入对共混物形成多孔结构的影响。
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