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The fabrication and electrochemical properties of electrospun nanofibers of a multiwalled carbon nanotube grafted by chitosan

机译:壳聚糖接枝的多壁碳纳米管电纺纳米纤维的制备及电化学性能

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Multiwalled carbon nanotubes (MWCNTs) were grafted by chitosan ( CS); the product could disperse well in poly( vinyl alcohol) (PVA) aqueous solution with 2% (v/v) acetic acid solution. Because this product has potential in several biological fields, it was electrospun so as to enlarge the surface area. Raman spectra indicated that the electrospinning process did not severely alter the electron hybridization of carbon atoms within the nanotube framework. Moreover and interestingly, these nanofibers showed a novel sheath-core structure; the outer and inner diameters of these sheath-core nanofibers were about 200 nm and 100 nm, respectively. These nanofibers' electrochemical properties were characterized by detection of hydrogen peroxide and voltammetric responses of potassium ferricyanide. The electrospun fibers' web displayed faster electron transfer kinetics and better electrochemical properties than its cast film, which justified further applications in biological areas.
机译:壳聚糖(CS)接枝了多壁碳纳米管(MWCNTs);该产品可以很好地分散在含2%(v / v)乙酸溶液的聚乙烯醇(PVA)水溶液中。由于该产品在几个生物学领域都具有潜力,因此进行了静电纺丝,以扩大表面积。拉曼光谱表明,电纺丝过程并未严重改变纳米管框架内碳原子的电子杂交。而且有趣的是,这些纳米纤维表现出新颖的皮芯结构。这些皮芯纳米纤维的外径和内径分别为约200 nm和100 nm。这些纳米纤维的电化学性质通过检测过氧化氢和铁氰化钾的伏安响应来表征。与流延膜相比,电纺纤维网显示出更快的电子传递动力学和更好的电化学性能,这证明了其在生物学领域的进一步应用是合理的。

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