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首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Nanofiber Cellulose-Incorporated Nanomesh Graphene-Carbon Nanotube Buckypaper and Ionic Liquid-Based Solid Polymer Electrolyte for Flexible Supercapacitors
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Nanofiber Cellulose-Incorporated Nanomesh Graphene-Carbon Nanotube Buckypaper and Ionic Liquid-Based Solid Polymer Electrolyte for Flexible Supercapacitors

机译:纳米纤维纤维素掺入的纳米型石墨烯 - 碳纳米管型蛋白质和柔性超级电容器的离子液体液体类固体聚合物电解质

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Flexible all-solid-state supercapacitors are actively investigated for their potential applications in flexible and wearable electronic devices. The important challenge in this field is to achieve a long-term cycling stability under repeated bending and high energy. Herein, the design and synthesis of the following are reported: 1) nanofiber cellulose (NFC)-incorporated nanomesh graphene-carbon nanotube (CNT) hybrid buckypaper electrodes with an excellent flexibility and a high specific capacitance and 2) an ionic liquid-based solid polymer electrolyte with an excellent mechanical flexibility to realize the aims. Herein, the NFC is used to increase the packing density of the buckypaper through the hydrophobic interaction with CNTs, thereby improving the mechanical flexibility. As for the solid polymer electrolyte, the crosslinked structure is induced to provide the pathways for ion conduction and mechanical integrity even at a high ionic liquid content by chemically attaching triethoxysilane end groups to poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide) triblock copolymer. The sandwich structure of 1) and 2) exhibits an excellent cycling stability over 5000 bending cycles and high areal energy density (247Whcm(-2)), which are superior to those previously reported in flexible supercapacitors.
机译:灵活的全固态超级电容器是积极调查它们在柔性和可穿戴电子设备中的潜在应用的潜在应用。该领域的重要挑战是在重复弯曲和高能量下实现长期循环稳定性。在此,如下所述的设计和合成:1)纳米纤维纤维素(NFC) - 丙烯酰型石墨烯 - 碳纳米管(CNT)混合柱α电极具有出色的柔韧性和高特定电容,2)离子液体基固体聚合物电解质具有出色的机械灵活性,以实现目标。这里,NFC用于通过与CNT的疏水相互作用提高曲调块的填充密度,从而提高机械柔性。对于固体聚合物电解质,诱导交联结构以通过将三乙氧基硅烷端基化学附着三乙氧基硅烷端基聚氯乙烯(环氧丙烷)-poly(环氧乙烷)三嵌段共聚物。夹心结构为1)和2)在5000多次弯曲循环和高面积能密度(247WHM(-2))上具有优异的循环稳定性,其优于先前在柔性超级电容器中报道的那些。

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