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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Graphene Hydrogel Film Adsorbed with Redox-Active Molecule Toward Energy Storage Device with Improved Energy Density and Unfading Superior Rate Capability
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Graphene Hydrogel Film Adsorbed with Redox-Active Molecule Toward Energy Storage Device with Improved Energy Density and Unfading Superior Rate Capability

机译:石墨烯水凝胶膜吸附着氧化还原活性分子朝向能量存储装置,具有改善的能量密度和不加强优越的速率能力

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摘要

Energy storage device (ESD) with enhanced energy density is desired in this electronics era, but it is often achieved at the compensation of the reduction of rate capability. To address this challenge, a hierarchical graphene hydrogel film (GHF) adsorbed with redox-active diaminoanthraquinone (DAA) molecule (DAA-GHF) was designed. The resulting DAA-GHF shows a large specific surface area and hierarchical porous structure, which can offer extra multiple charge storage and simultaneously guarantee rapid electron and ion transportation. Using the synergistic effect of DAA and GHF, DAA-GHF shows a significantly enhanced capacitance of 394.3 F g(-1) at 1 A g(-1) in supercapacitors and 172.3 mAh g(-1) at 0.2 A g(-1) in Zn ion batteries (ZIBs). Moreover, the rate capability for DAA-GHF-based supercapacitor and ZIB maintains outstanding, remaining 69.3% for supercapacitor and 52.5% for ZIB when the current density increased to 100 and 30 A g(-1), respectively. Accordingly, ZIB achieves an ultrahigh power density of 28.1 kW kg(-1) and presents excellent capacity retention of 92.5% after 5000 cycles. Besides, the flexible solid-state ZIB shows stable capacity under various bending states or after 500 times bending. This strategy provides a new path for fabricating high- performance films for future flexible electronic products.
机译:在该电子设备中需要能量存储装置(ESD)具有增强的能量密度,但通常在减少速率能力的补偿时实现。为了解决这一挑战,设计了吸附着氧化还原活性二氨基醌(DAA)分子(DAA-GHF)的分层石墨烯水凝胶膜(GHF)。所得到的DAA-GHF示出了大的比表面积和层级多孔结构,其可以提供额外的多电荷存储,并同时保证快速的电子和离子运输。使用DAA和GHF的协同效应,DAA-GHF在超级电容器中显示出394.3°F G(-1)的显着增强的电容,在0.2Ag(-1)下172.3mahg(-1)(-1 )在Zn离子电池(Zibs)中。此外,基于GAA-GHF的超级电容器和ZIB的速率能力保持优异,剩余的超级电容器69.3%,当电流密度分别增加到100和30Ag(-1)时,ZIB的52.5%。因此,Zib实现了28.1kW kg(-1)的超高功率密度,并且在5000次循环后呈现出92.5%的优异容量保持。此外,柔性固态Zib显示在各种弯曲状态下或500次弯曲后的稳定容量。该策略为未来灵活电子产品制造高性能电影提供了新的路径。

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