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In Search of Stronger/Cheaper Chitin Nanofibers through Electrospinning of Chitin-Cellulose Composites Using an Ionic Liquid Platform

机译:通过使用离子液体平台来搜索更强/更便宜的几丁质纳米纤维通过几丁质 - 纤维素复合材料的静电纺丝

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摘要

The ability of the ionic liquid (IL) 1-ethyl-3-methylimidazolium acetate ([C(2)mim][OAc]) to solubilize natural biopolymers (e.g., chitin and cellulose) without any chemical modification has been used to develop a one pot process to prepare a spinning dope by extracting chitin from shrimp shell, codissolving microcrystalline cellulose (MCC, DP = 270), and electrospinning nanomats from shrimp shell-extract/MCC solutions. The resulting spinning dopes were prepared with optimal viscosity of 380 to 900 cP, and conductivity and surface tension of similar to 2.8 mS/cm and similar to 36 dyn/cm, respectively; however, nanofibers could only be prepared when the chitin/MCC ratios in SS-extract/MCC solution were between 9/1 and 6/4. Compared to nanomats electrospun from shrimp shell-extract solution, 7/3 chitin/MCC composite nanomats demonstrated a 2-fold improvement in hardness and 3-fold improvement in elasticity, although further increase in MCC content resulted in lowering both parameters which nonetheless were higher than the pure chitin nanomats. This one pot process for preparing spinning dopes directly from shrimp shell-extract is a viable method to prepare chitin/MCC composites of improved strength/elasticity at lower costs.
机译:离子液体(IL)1-乙基-3-甲基咪唑鎓乙酸铵([C(2)MIM] [OAC])用于溶解天然生物聚合物(例如甲壳素和纤维素)而无需任何化学改性,已经用于开发一个通过从虾壳中提取甲壳素,Cocassolving微晶纤维素(MCC,DP = 270)和来自虾壳 - 提取物/ MCC溶液的静电纺丝纳米液来制备旋转涂料的罐方法。所得纺丝掺杂剂以380至900cp的最佳粘度制备,以及相似的电导率和表面张力分别与36μm/ cm类似;然而,只有在SS提取物/ MCC溶液中的几丁质/ MCC比率在9/1和6/4之间时才能制备纳米纤维。与虾壳壳溶液的纳米麦芽纺相比,7/3丁蛋白/ MCC复合纳米瘤表现出了2倍的硬度提高,并且弹性的3倍改善,但MCC含量的进一步增加导致虽然较高的两个参数降低比纯的几丁质纳米瘤。这种用于直接从虾壳提取物制备纺丝掺杂剂的罐方法是制备改进的强度/弹性的制备丁蛋白/ MCC复合材料的可行方法。

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