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Electrospun nanofiber membranes as ultrathin flexible supercapacitors

机译:电纺纳米纤维膜作为超薄柔性超级电容器

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A highly flexible electrochemical supercapacitor electrode was developed with a novel metal oxide-reinforced nanofiber electrode by utilizing a solution-based electrospinning technique. The facile fabrication steps involved the introduction of metal precursors into a polymeric solution, which was subjected to an in situ electrospinning process. The electrospun polymeric web with metallic ingredients was then subjected to an oxidative stabilization process that induced the formation of metal oxide nanoparticles within the polymer structure. Finally, the metal oxide nanoparticles incorporated with nanofibers were obtained using a carbonization process, thus converting the polymer backbones into a carbon-rich conductive nanofiber structure. The fabricated nanofibers were decorated and implanted with metal oxide nanoparticles that had a surface-decorated structure morphology due to the solubility of the precursors in the reaction solution. The electrochemical performance of the fabricated metal oxide reinforced with nanofiber electrodes was investigated as an electrochemical system, and the novel morphology significantly improved the specific capacitance compared to a pristine carbon nanofiber membrane. As a result of the uniform dispersion of metal oxide nanoparticles throughout the surface of the nanofibers, the overall capacitive behavior of the membrane was enhanced. Furthermore, a fabricated free-standing flexible device that utilized the optimized nanofiber electrode demonstrated high stability even after it was subjected to various bending operations and curvatures. These promising results showed the potential applications of these lightweight, conductive nanofiber electrodes in flexible and versatile electronic devices.
机译:利用基于溶液的静电纺丝技术,用新型的金属氧化物增强的纳米纤维电极开发了一种高度柔性的电化学超级电容器电极。容易的制造步骤涉及将金属前体引入到聚合物溶液中,然后对其进行原位电纺丝工艺。然后,将具有金属成分的电纺聚合物幅材进行氧化稳定化处理,以诱导在聚合物结构内形成金属氧化物纳米粒子。最后,通过碳化工艺获得了掺有纳米纤维的金属氧化物纳米颗粒,从而将聚合物主链转化为富碳的导电纳米纤维结构。装饰该纳米纤维,并注入金属氧化物纳米粒子,该纳米粒子由于前体在反应溶液中的溶解性而具有表面修饰的结构形态。研究了用纳米纤维电极增强的金属氧化物的电化学性能,并将其作为电化学体系进行了研究,与原始碳纳米纤维膜相比,这种新型形态显着提高了比电容。由于金属氧化物纳米颗粒均匀分散在整个纳米纤维的表面上,膜的整体电容性能得到了增强。此外,利用优化的纳米纤维电极制成的独立式柔性装置即使在经受各种弯曲操作和弯曲后仍显示出高稳定性。这些令人鼓舞的结果表明,这些轻质导电纳米纤维电极在柔性多功能电子设备中的潜在应用。

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