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首页> 外文期刊>Applied Surface Science >Fabrication of an ingenious metallic asymmetric supercapacitor by the integration of anodic iron oxide and cathodic nickel phosphide
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Fabrication of an ingenious metallic asymmetric supercapacitor by the integration of anodic iron oxide and cathodic nickel phosphide

机译:通过阳极氧化铁和阴极磷化镍的集成制备巧妙的金属不对称超级电容器

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摘要

Energy storage systems play a vital role in rationalizing the imminent energy crisis and ecological discomfort. The modern tactic of resolving the lack of energy density dispute with flexible hybrid supercapacitors that could generate high power and energy density under different conditions in energy systems. Here, we introduce a simple solvothermal approach at low temperatures to prepare iron oxide and nickel phosphide nanoparticles. The formation of single-phase pure Fe3O4 and Ni2P with high crystallinity was identified through XRD analysis. The morphology of both the Fe3O4 and Ni2P was confirmed as uniformly distributed nanoparticles with an improved active surface area. The electrochemical activity of the prepared Fe3O4 and Ni2P electrodes revealed improved storage capacity (106 & 354 C g(-1)) and high retention capability (90%) at higher current densities with resilient cyclic stability (8000 cycles). Finally, a flexible asymmetric supercapacitor was fabricated and demonstrated superiorly high cyclic stability (20,000 cycles) with an improved energy density (31 Wh kg(-1)) and power density (6400 W kg(-1)). Therefore, the designed metallic Fe3O4 vertical bar vertical bar Ni2P asymmetric system is anticipated to be a promising strategy toward the advancement of future energy systems.
机译:储能系统在合理化迫在眉睫的能源危机和生态不适方面发挥着至关重要的作用。解决灵活的混合超级电容器可以解决能量密度不足的现代策略,这种超级电容器可以在能源系统的不同条件下产生高功率和能量密度。在这里,我们介绍一种在低温下的简单溶剂热法,以制备氧化铁和磷化镍纳米粒子。通过XRD分析鉴定了高结晶度的单相纯Fe3O4和Ni2P的形成。证实了Fe 3 O 4和Ni 2 P的形态均是​​具有改善的活性表面积的均匀分布的纳米颗粒。制备的Fe3O4和Ni2P电极的电化学活性显示出更高的存储容量(106&354 C g(-1))和更高的保持能力(90%),具有较高的电流密度和弹性循环稳定性(8000个循环)。最后,制造了柔性非对称超级电容器,并证明了其出色的高循环稳定性(20,000个循环),同时具有改善的能量密度(31 Wh kg(-1))和功率密度(6400 W kg(-1))。因此,设计的金属Fe3O4垂直棒Ni2P不对称竖棒有望成为未来能源系统发展的有希望的策略。

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