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Iron oxide – poly(m-anthranilic acid)–poly(ε-caprolactone) electrospun composite nanofibers: fabrication and properties

机译:Iron oxide – poly(m-anthranilic acid)–poly(ε-caprolactone) electrospun composite nanofibers: fabrication and properties

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摘要

The inclusion of iron and carboxylic acid-functionalized polyaniline into polymeric polycaprolactone structures is expected to enhance the electron-donating ability which in turn increases the compound conductivity and may induce reversible redox chemistry, allowing them to be used in electrochemical immunosensors. Iron oxide-containing poly(m-anthranilic acid) (P3ANA)–polycaprolactone (PCL) composite nanofibers were electrospun and investigated by structural, morphological, chemical composition, and electrochemical analyses. The findings confirm that blending polymers of different characteristics and ratios improves morphologic homogeneity and electrical (impedimetric) properties. Frequency-dependent electrochemical investigation using electrochemical impedance spectroscopy shows remarkable changes in the percentage of polymer contents, particularly when Fe2O3 and Fe3O4 are present. The modifications in the chemical state of the samples confirmed by the C–O and CO peaks are analyzed by means of X-ray photoelectron spectroscopy. Hence, this study presents a new composite structure, iron (in two forms) P3ANA/PCL composite nanofibers, and the assessment of their intrinsic properties enabling the discovery of possible application fields in biomedical and sensor applications.
机译:铁和羧基的包容acid-functionalized聚苯胺成聚合物聚已酸内酯结构有望提高电子基的能力增加了复合导电率和可能产生可逆的氧化还原化学,允许他们用于电化学免疫传感器。oxide-containing保利(m-anthranilic酸)(P3ANA)聚已酸内酯(PCL)复合材料纳米纤维是实际上电纺和调查结构、形态、化学成分、和电化学分析。确认混合聚合物的不同和比率提高了形态学特征同质性和电气(impedimetric)属性。调查使用电化学阻抗光谱显示了显著的变化比例的聚合物内容,特别是当Fe2O3 Fe3O4存在。样品确认的化学状态切断和CO峰值进行了分析通过x射线光电子能谱。研究提出了一种新的复合结构,铁(两种形式)P3ANA / PCL复合纳米纤维,和评估他们的内在属性启用的发现可能的应用程序在生物医学领域和传感器的应用。

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