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首页> 外文期刊>Journal of Applied Polymer Science >Dry-jet wet electrospinning of native cellulose microfibers with macroporous structures from ionic liquids
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Dry-jet wet electrospinning of native cellulose microfibers with macroporous structures from ionic liquids

机译:具有离子液体的大孔结构的天然纤维素微纤维的干式湿静纺

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In this study, we have provided a review of electrospun cellulose micro/nanofibers from ionic liquids (ILs) and cosolvents from which we identify a lack of previous studies focusing on the structural morphology of the dry-jet wet electrospun native cellulose fibers from ILs. We have therefore aimed to investigate factors influencing the structural morphology of cellulose/IL electrospun fibers and investigate the coagulation parameters on this morphology. The electrospinning of 10% w/v cellulose/([C2MIM][OAc]/MIM) (1/1, v/v) solution was shown to produce macroporous fibers with average diameters of 2.8 +/- 1.4 mu m with pore sizes from 100 to 200 nm. We have found that coagulation bath type and immersion time affect the morphological structure of the electrospun fibers. The fiber spinnability, formation, and morphological structure are mainly dependent on the method used to collect and coagulate/solidify the fibers. The physical properties of the dissolved cellulose were measured and these are discussed in terms of the solution spinnability. The structural morphology of the electrospun cellulose fibers was characterized by scanning electron microscopy, and finally the extraction of IL from the fiber body was confirmed by nuclear magnetic resonance. The electrospun cellulose fibers morphology shows the formation of both micron and nanometer sized fibers with different morphological "macroporous" structures. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47153.
机译:在这项研究中,我们已经提供了电纺丝纤维素微的评价/从从中我们鉴定缺乏以前的研究集中于从离子液体的干喷湿电天然纤维素纤维的结构形态的离子液体(离子液体)和共溶剂的纳米纤维。因此,我们的目的是探讨影响纤维素/ IL电纺纤维的结构形态因素,并探讨这种形态的凝血参数。的10%的电纺丝w / v的纤维素/([C2MIM] [OAC] / MIM)(1/1,体积/体积)的溶液显示出产生大孔纤维以2.8 +/- 1.4微米的平均直径米,孔径从100至200nm。我们已经发现,凝固浴型和浸泡时间的影响电纺丝纤维的形态结构。该纤维的可纺性,形成和形态结构主要取决于用于收集和凝结/固化纤维的方法。溶解的纤维素的物理性能进行测定和这些在溶液的可纺性方面进行讨论。电纺丝纤维素纤维的结构形态的特点是扫描电子显微镜,最后IL从纤维体的提取物通过核磁共振证实。电纺丝纤维素纤维形态学同时显示了微米和纳米的尺寸形成具有不同的形态“大孔”结构的纤维。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019年,136,47153。

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