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首页> 外文期刊>Nanoscale >Electrospinning of nanofibers from non-polymeric systems: polymer-free nanofibers from cyclodextrin derivatives
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Electrospinning of nanofibers from non-polymeric systems: polymer-free nanofibers from cyclodextrin derivatives

机译:电纺的non-polymeric的纳米纤维系统:polymer-free纳米纤维环糊精衍生物

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High molecular weight polymers and high polymer concentrations are desirable for the electrospinning of nanofibers since polymer chain entanglements and overlapping are important for uniform fiber formation. Hence, the electrospinning of nanofibers from non-polymeric systems such as cyclodextrins (CDs) is quite a challenge since CDs are cyclic oligosaccharides. Nevertheless, in this study, we have successfully achieved the electrospinning of nanofibers from chemically modified CDs without using a carrier polymer matrix. Polymer-free nanofibers were electrospun from three different CD derivatives, hydroxypropyl-β-cyclodextrin (HPβCD), hydroxypropyl-γ-cyclodextrin (HPγCD) and methyl-β-cyclodextrin (MβCD) in three different solvent systems, water, dimethylformamide (DMF) and dimethylacetamide (DMAc). We observed that the electrospinning of these CDs is quite similar to polymeric systems in which the solvent type, the solution concentration and the solution conductivity are some of the key factors for obtaining uniform nanofibers. Dynamic light scattering (DLS) measurements indicated that the presence of considerable CD aggregates and the very high solution viscosity were playing a key role for attaining nanofibers from CD derivatives without the use of any polymeric carrier. The electrospinning of CD solutions containing urea yielded no fibers but only beads or splashes since urea caused a notable destruction of the self-associated CD aggregates in their concentrated solutions. The structural, thermal and mechanical characteristics of the CD nanofibers were also investigated. Although the CD derivatives are amorphous small molecules, interestingly, we observed that these electrospun CD nanofibers/nanowebs have shown some mechanical integrity by which they can be easily handled and folded as a free standing material.
机译:高分子量聚合物和聚合物浓度是可取的电纺纳米纤维的聚合物链纠葛和重叠是重要的均匀的纤维形成。电纺的non-polymeric的纳米纤维系统,如环糊精(CDs)相当挑战因为cd环状低聚糖。然而,在这项研究中,我们已经成功实现的电纺纳米纤维不使用载体化学修改的cd聚合物矩阵。从三个不同的CD衍生品实际上电纺,惠普β羟丙基-β环糊精(CD),羟丙基-γ环糊精(惠普γCD)和甲基-β环糊精(MβCD)在三个不同溶剂系统,水,二甲基甲酰胺(DMF)和二甲基乙酰胺(DMAc)。电纺的这些cd很相似聚合物系统的溶剂类型,溶液浓度和解决方案导电率的关键因素获得均匀的纳米纤维。测量结果表明,散射(DLS)存在相当大的CD骨料和非常高的粘度在一个关键的解决方案角色实现纳米纤维从CD衍生品不使用任何聚合物载体。电纺的CD的解决方案包含尿素没有纤维只有珠子或飞溅因为尿素引起显著的破坏self-associated CD聚集在他们集中解决方案。和机械特性的CD纳米纤维也被调查。CD衍生品无定形的小分子,有趣的是,我们注意到,这些实际上电纺CD纳米纤维/ nanowebs显示一些机械他们可以很容易地处理和完整性折叠作为一个独立的材料。

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