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Low temperature synthesis of sponge-like NiV2O6/C composite by calcining Ni-V-based coordination polymer for supercapacitor application

机译:通过煅烧基于Ni-V的配位聚合物的超级电容器应用来低温合成海绵状NiV2O6 / C复合材料

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摘要

NiV2O6/C composites are prepared via a solid-state conversion process by low temperature (150 degrees C) annealing nickel-vanadium-based coordination polymer, [Ni(phen)H2O][V2O6]. The obtained NiV2O6/C nanoribbons are interconnected to form a sponge-like morphology, when the composites are first used as supercapacitor electrode, it exhibits a specific capacitance of 745.6 F g(-1) at 0.5 A g(-1) with a good rate capability of 520.0 F g(-1) (69.7% retention) at 10 A g(-1) (20-folds). The NiV2O6/C composite exhibits good cycling performance, the capacitance retentions at 6000th and 12000th charging/discharging cycles at 2 A g(-1) are 81.5% and 77.8% relative to the original capacitances, respectively. The morphological and compositional changes of the NiV2O6/C composite electrode before and after 12,000 GCD cycles (two-electrode system) are carefully elaborated through a series of characterization (SEM, EDS, and )(PS). Furthermore, the NiV2O6/C nanoribbons possess reversible electrochromism, which is probably related to the intervalence charge transfer (IVCT, V-IV - V-V).
机译:NIV2O6 / C复合材料通过低温(150℃)退火的基于基于基于镍 - 钒的配位聚合物,[Ni(Phen)H 2 O] [V2O6],通过固态转化方法制备。当首先用作超级电容器电极时,所获得的NIV2O6 / c纳米纤维波动以形成海绵状形貌,其表现出745.6 f g(-1)的特定电容,其具有良好的0.5 a g(-1)在10Ag(-1)(20倍)下为520.0f g(-1)(保留69.7%)的速率能力。 NIV2O6 / C复合材料表现出良好的循环性能,6000th和12000个充电/放电循环的电容保持分别为2Ag(-1)的充电/放电循环,分别为81.5%和77.8%,分别为原始电容。通过一系列表征(SEM,EDS和)(PS)小心地阐述NIV2O6 / C复合电极的形态学和组成变化(二极管系统)。此外,NIV2O6 / C纳米波巴具有可逆电致变色,其可能与间歇电荷转移(IVCT,V-IV - & V-V)有关。

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