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Free-Standing and Heteroatoms-Doped Carbon Nanofiber Networks as a Binder-Free Flexible Electrode for High-Performance Supercapacitors

机译:自由杂原子掺杂的碳纳米纤维网络作为高性能超级电容器的无粘合剂柔性电极

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摘要

Flexible and heteroatoms-doped (N, O and P) activated carbon nanofiber networks (ACFNs) have been successfully prepared with a mixture of polyamic acid (PAA) and poly(diaryloxyphosphazene) (PDPP) as a solution through electrospinning, followed by a heat post-treatment. The resultant heteroatoms-doped ACFNs can be used as binder-free electrodes for high-performance flexible supercapacitors (SCs) due to lightweight, three-dimensional open-pore structure and good mechanical strength. Despite its surface area being lower than 130.6 m2·g−1, the heteroatoms-doped ACFNs exhibited a high heteroatoms (N, O and P) content of 17.9%, resulting in a highly specific capacitance of 182 F·g−1 at a current density of 1 A·g−1 in 6 M KOH electrolyte in a two-electrode cell and an excellent rate capability of 74.7% of its initial capacitance from 1 A·g−1 to 10 A·g−1 under the mass loading of 1.5 mg·cm−2. The electrical double-layer (EDL) capacitance and pseudocapacitance can be easily decoupled in the heteroatoms-doped mesoporous ACFNs. SCs device based on heteroatoms-doped ACFNs exhibited a high energy density of 6.3 W·h·kg−1 with a power density of 250 W·kg−1, as well as excellent cycling stability with 88% capacitance retention after 10,000 charge–discharge cycles. The excellent electrochemical performance was attributed to the mesoporous structure of ACFNs and pseudocapacitive heteroatoms.
机译:通过电纺丝并随后加热,成功地将聚酰胺酸(PAA)和聚(二芳氧基磷腈)(PDPP)的混合物制成了柔性且杂原子掺杂的(N,O和P)活性碳纳米纤维网络(ACFN)。后处理。由于重量轻,三维开孔结构和良好的机械强度,所得的杂原子掺杂ACFN可用作高性能柔性超级电容器(SC)的无粘合剂电极。尽管其表面积小于130.6 m 2 ·g -1 ,但杂原子掺杂的ACFN的杂原子(N,O和P)含量较高,为17.9%,在两电极电池中的6 M KOH电解质中,在电流密度为1 A·g −1 的情况下会产生182 F·g -1 的高比电容,并且在1.5 mg·cm -1 到10 A·g −1 的初始电容的优良倍率能力为74.7% > −2 。双电层(EDL)电容和伪电容可以轻松地在杂原子掺杂的介孔ACFN中解耦。基于掺杂有杂原子的ACFN的SCs器件还显示出6.3 W·h·kg -1 的高能量密度,以及250 W·kg -1 的功率密度在10,000次充放电循环后,具有出色的循环稳定性和88%的电容保持率。优异的电化学性能归因于ACFN和伪电容杂原子的介孔结构。

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