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Investigation into electrospinning water-soluble xylan: developing applications from highly absorbent and hydrophilic surfaces to carbonized fiber

机译:静电纺丝水溶性木质的研究:从高吸水性和亲水性表面到碳化纤维的应用

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Heteropolysaccharides such as xylans are abundant renewable resources that could potentially replace some fossil-fuel derived chemicals and materials in packaging and personal care products. In this study, water-soluble xylan extracted from wheat straw was electrospun into nanofibers with a high molecular weight carrier polymer, polyethylene oxide (PEO). Bead-free uniform nanofibers with diameters ranging from 167 to 634 nm were produced with content of PEO as low as 4% of dry weight. The rheology of xylan/PEO aqueous solutions were studied and the effects of xylan-to-PEO ratio on the properties of fibers were correlated. Strong intermolecular interactions between xylan and PEO was found by Fourier transform infrared spectroscopy and differential scanning calorimetry as noted by shifts in vibrational absorbance bands and an increase in the T-g of PEO. In addition, an attempt was made to produce carbon material from xylan-based electrospun fiber mats. The effect of heat treatment in air and inert atmosphere on the hydrophilicity and mechanical properties of electrospun fibers was discussed in terms of making xylan into functional materials. The samples were transformed from being able to be rapidly redissolved in water into water-insoluble, yet hydrophilic materials, and finally to hydrophobic materials when comparing the as-spun fiber to air oxidized fiber and samples after carbonization, respectively.
机译:杂多糖如Xylans是丰富的可再生资源,可能会替换包装和个人护理产品中的一些化石燃料衍生的化学品和材料。在该研究中,用高分子量载体聚合物,聚环氧丙烷(PEO),从小麦秸秆中提取的水溶性木聚糖电纺成纳米纤维。直径为167至634nm的无直径的无珠均匀纳米纤维的含量低至干重的4%。研究了木聚糖/ PEO水溶液的流变学,并对木聚糖比对纤维性能的影响进行了相关性。通过傅里叶变换红外光谱和差示扫描量热法发现了Xylan和PEO之间的强的分子间相互作用,如振动吸光度带的变化和PEO的T-G的增加。此外,尝试产生来自基于木聚电纺纤维垫的碳材料。在使木聚糖中讨论了将木聚糖讨论了在空气和惰性气氛中的热处理对电纺丝纤维的亲水性和力学性能的影响。将样品转化为能够在水中快速地将水中迅速溶解成水不溶性但亲水的材料,并且当分别将AS-Spum纤维与碳化后的空气氧化纤维和样品进行比较时,最终疏水材料。

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