首页> 美国卫生研究院文献>Nanomaterials >Electroactive Ultra-Thin rGO-Enriched FeMoO4 Nanotubes and MnO2 Nanorods as Electrodes for High-Performance All-Solid-State Asymmetric Supercapacitors
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Electroactive Ultra-Thin rGO-Enriched FeMoO4 Nanotubes and MnO2 Nanorods as Electrodes for High-Performance All-Solid-State Asymmetric Supercapacitors

机译:电活性超薄rGO富集的FeMoO4纳米管和MnO2纳米棒作为高性能全固态非对称超级电容器的电极

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摘要

A flexible asymmetric supercapacitor (ASC) with high electrochemical performance was constructed using reduced graphene oxide (rGO)-wrapped redox-active metal oxide-based negative and positive electrodes. Thin layered rGO functionality on the positive and the negative electrode surfaces has promoted the feasible surface-active sites and enhances the electrochemical response with a wide operating voltage window. Herein we report the controlled growth of rGO-wrapped tubular FeMoO nanofibers (NFs) via electrospinning followed by surface functionalization as a negative electrode. The tubular structure offers the ultrathin-layer decoration of rGO inside and outside of the tubular walls with uniform wrapping. The rGO-wrapped tubular FeMoO NF electrode exhibited a high specific capacitance of 135.2 F g in Na SO neutral electrolyte with an excellent rate capability and cycling stability (96.45% in 5000 cycles) at high current density. Meanwhile, the hydrothermally synthesized binder-free rGO/MnO nanorods on carbon cloth (rGO-MnO @CC) were selected as cathode materials due to their high capacitance and high conductivity. Moreover, the ASC device was fabricated using rGO-wrapped FeMoO on carbon cloth (rGO-FeMoO @CC) as the negative electrode and rGO-MnO @CC as the positive electrode (rGO-FeMoO @CC/rGO-MnO @CC). The rationally designed ASC device delivered an excellent energy density of 38.8 W h kg with a wide operating voltage window of 0.0–1.8 V. The hybrid ASC showed excellent cycling stability of 93.37% capacitance retention for 5000 cycles. Thus, the developed rGO-wrapped FeMoO nanotubes and MnO nanorods are promising hybrid electrode materials for the development of wide-potential ASCs with high energy and power density.
机译:使用还原的氧化石墨烯(rGO)包裹的氧化还原活性金属氧化物基负极和正极构造了具有高电化学性能的柔性不对称超级电容器(ASC)。正极和负极表面上的薄层rGO功能促进了可行的表面活性位点,并在宽的工作电压范围内增强了电化学响应。在这里,我们报告rGO包裹管状FeMoO纳米纤维(NFs)的受控增长通过静电纺丝,然后表面功能化为负极。管状结构在管状壁的内部和外部提供了rGO的超薄装饰,且包裹均匀。包裹有rGO的管状FeMoO NF电极在Na SO中性电解液中显示出135.2 F g的高比电容,在高电流密度下具有出色的倍率能力和循环稳定性(5000次循环中为96.45%)。同时,选择了碳布上水热合成的无粘结剂rGO / MnO纳米棒(rGO-MnO @CC)作为阴极材料,因为它们具有高电容和高导电性。而且,ASC装置是用包裹在碳布上的rGO包裹的FeMoO(rGO-FeMoO @ CC)作为负电极和rGO-MnO @ CC作为正电极(rGO-FeMoO @ CC / rGO-MnO @ CC)制造的。合理设计的ASC器件可提供38.8 W h kg的出色能量密度,并具有0.0-1.8 V的宽工作电压范围。混合ASC在5000个循环中显示出93.37%的电容保持率的出色循环稳定性。因此,已开发的rGO包裹的FeMoO纳米管和MnO纳米棒是有前途的混合电极材料,可用于开发具有高能量和功率密度的宽电位ASC。

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