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Characterization of electrospun Aronia melanocarpa fruit extracts loaded polyurethane nanoweb

机译:Electrome Aronia Melanocarpa 水果提取物负载聚氨酯NANOWeb

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In this study, Aronia melanocarpa fruit was extracted with ethanol, distilled water (pH 7), acidified distilled waters (at pH 5 and 3) as the solvent, the total polyphenol content, total flavonoid content, and anti-oxidant activity of the extracts were analyzed. Then, we investigated the possibility of producing nanofibers by the electrospinning process by adding the Aronia melanocarpa fruit extract (AE), which showed the greatest antioxidant effect, to a polyurethane (PU). The electrospinning method used a PU concentration of 10 wt% and 12 wt%, an applied voltage of 10?kV, a tip-to-collector distance of 15?cm, and flowrate of 0.3?mL/h. The analysis confirmed that the total polyphenol, total flavonoid content, and antioxidant activity of the distilled water extract were the highest at a pH value of 3. As the AE was added and its concentration increased, both the viscosity and the diameter of the nanofibers also increased. At PU concentrations of 10%, 12%, relatively uniform nanofibers without beads were prepared by adding 2 to 3 wt% and 0.5 to 2 wt% of the AE, respectively. At the above conditions, the diameters of the nanofibers that were produced were in the range of 227 to 420?nm, so it was evident that PU/AE nanofibers with various diameters could be prepared by controlling the concentration of PU and AE. In addition, the FT-IR, XRD, and DSC analyses confirmed that hydrogen bonding occurred between the AE and the PU. Thus, the resulting crystallinity, melting point, and reduction in the heat capacity confirmed that the AE was well mixed with the PU polymer.
机译:在本研究中,用乙醇,蒸馏水(pH7),酸化蒸馏水(在pH5和3)中提取芳俱甜瓜果,作为溶剂,总多酚含量,总黄酮含量和抗氧化剂活性的提取物分析了。然后,我们研究了通过加入Aronia Melanocarpa果提取物(AE)来生产纳米纤维的可能性,这向聚氨酯(PU)表示了最大的抗氧化效果。静电纺丝方法使用PU浓度为10wt%和12wt%,施加电压为10×kV,尖端到集电极距离为15Ω·厘米,流动为0.3Ω×ml / h。分析证实,蒸馏水提取物的总多酚,总黄酮含量和抗氧化剂活性在pH值为3.如加入AE,其浓度增加,粘度和纳米纤维的直径也增加增加。在PU浓度为10%,12%,通过分别加入2至3wt%和0.5至2wt%的Ae制备不具有珠子的相对均匀的纳米纤维。在上述条件下,产生的纳米纤维的直径在227至420℃的范围内,因此可以通过控制PU和AE的浓度来制备具有各种直径的PU / AE纳米纤维。另外,FT-IR,XRD和DSC分析证实,在AE和PU之间发生氢键。因此,得到的结晶度,熔点和热容量的降低证实,AE与PU聚合物很好地混合。

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