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Textile electrodes woven by carbon nanotube-graphene hybrid fibers for flexible electrochemical capacitors

机译:纺织编织碳电极为灵活nanotube-graphene混合纤维电化学电容器

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摘要

Functional graphene-based fibers are promising as new types of flexible building blocks for the construction of wearable architectures and devices. Unique one-dimensional (1D) carbon nanotubes (CNTs) and 2D graphene (CNT/G) hybrid fibers with a large surface area and high electrical conductivity have been achieved by pre-intercalating graphene fibers with Fe3O4 nanoparticles for subsequent CVD growth of CNTs. The CNT/G hybrid fibers can be further woven into textile electrodes for the construction of flexible supercapacitors with a high tolerance to the repeated bending cycles. Various other applications, such as catalysis, separation, and adsorption, can be envisioned for the CNT/G hybrid fibers.
机译:功能性石墨烯纤维是有前途的新类型的灵活的构建块可穿戴的架构和建设设备。纳米管)和二维石墨烯(CNT / G)混合动力车纤维具有大的表面积和高通过电导率与Fe3O4 pre-intercalating石墨烯纤维纳米颗粒对后续CVD生长碳纳米管。问/ G混合纤维可以进一步融入纺织建设的电极柔性超级电容器具有高耐受性重复弯曲周期。应用程序,如催化、分离和吸附,可以设想CNT / G混合纤维。

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