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Monolayer Nickel Cobalt Hydroxyl Carbonate for High Performance All-Solid-State Asymmetric Supercapacitors

机译:高性能全固态非对称超级电容器的单层镍钴羟基碳酸盐

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摘要

The emergence of atomically thick nanolayer materials, which feature a short ion diffusion channel and provide more exposed atoms in the electrochemical reactions, offers a promising occasion to optimize the performance of supercapacitbrs on the atomic level. In this work, a novel monolayer Ni-Co hydroxyl carbonate with an average thickness of 1.07 nm is synthesized via an ordinary one-pot hydrothermal route for the first time. This unique monolayer structure can efficiently rise up the exposed electroactive sites and facilitate the surface dependent electrochemical reaction processes, and thus results in outstanding specific capacitance of 2266 F g(-1). Based on this material, an all-solid-state asymmetric supercapacitor is developed adopting alkaline PVA. (poly(vinyl alcohol)) gel (PVA/KOH) as electrolyte, which performs remarkable cycling stability (no capacitance fade after 19 000 cycles) together with promising energy density of 50 Wh kg(-1) (202 mu Wh cm(-2)) and high power density of 8.69 kW kg(-1) (35.1 mW cm(-2)). This as-assembled all-solid-state asymmetric supercapacitor (AASC) holds great potential in the field of portable energy storage devices.
机译:具有短离子扩散通道并在电化学反应中提供更多暴露原子的原子厚纳米层材料的出现,为在原子水平上优化超级电容器的性能提供了一个有前途的机会。在这项工作中,首次通过普通的一锅水热法合成了平均厚度为1.07 nm的新型单层Ni-Co羟基碳酸酯。这种独特的单层结构可以有效地升高暴露的电活性位,并促进与表面有关的电化学反应过程,从而产生2266 F g(-1)的出色比电容。基于这种材料,开发了一种采用碱性PVA的全固态不对称超级电容器。 (聚乙烯醇)凝胶(PVA / KOH)作为电解质,具有出色的循环稳定性(在19000次循环后无电容衰减)以及有希望的50 Wh kg(-1)(202 mu Wh cm(-)的能量密度2))和8.69 kW kg(-1)(35.1 mW cm(-2))的高功率密度。这种组装好的全固态不对称超级电容器(AASC)在便携式储能设备领域具有巨大的潜力。

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