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Adhesion of Electrospun Poly(acrylonitrile) Nanofibers on Conductive and Isolating Foil Substrates

机译:电纺聚(丙烯腈)纳米纤维在导电和隔离箔基材上的粘附性

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Electrospinning can be used to prepare nanofibers from various polymers and polymer blends. The adhesion of nanofibers to the substrates on which they are electrospun varies greatly with the substrate material and structure. In some cases, good adhesion is desired to produce sandwich structures by electrospinning one material directly onto another. This is the case, e.g., with dye-sensitized solar cells (DSSCs). While both pure foil DSSCs and pure electrospun DSSCs have been examined, a combination of both technologies can be used to combine their advantages, e.g., the lateral strength of foils with the large surface-to-volume ratio of electrospun nanofibers. Here, we investigate the morphology and adhesion of electrospun nanofibers on different foil substrates containing materials commonly used in DSSCs, such as graphite, poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS) or TiO2. The results show that the foil material strongly influences the adhesion, while a plasma pretreatment of the foils showed no significant effect. Moreover, it is well known that conductive substrates can alter the morphology of nanofiber mats, both at microscopic and macroscopic levels. However, these effects could not be observed in the current study.
机译:静电纺丝可用于制备各种聚合物和聚合物共混物的纳米纤维。纳米纤维对它们的基板的粘附性与基板材料和结构变化很大。在某些情况下,希望通过将一种材料直接静电地静电纺丝到另一个材料上产生良好的粘合性。这是例如染料敏化太阳能电池(DSSCs)的情况。虽然已经检查了纯箔DSSCs和纯电纺器DSSCS,但两种技术的组合可用于将它们的优点与电纺纳米纤维的大面对体积比的侧向体积比相结合。在这里,我们研究了Electromat纳米纤维在DSSCs中常用的不同箔底物上的形态和粘附,例如石墨,聚(3,4-亚乙基噻吩)聚苯乙烯磺酸丁酯(PEDOT:PSS)或TiO 2。结果表明,箔材料强烈影响粘附,而箔的血浆预处理显示出没有显着效果。此外,众所周知,导电基材可以在微观和宏观水平下改变纳米纤维垫的形态。然而,在目前的研究中无法观察到这些效果。

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