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Fabricating an Aqueous Symmetric Supercapacitor with a Stable High Working Voltage of 2 V by Using an Alkaline–Acidic Electrolyte

机译:通过使用碱性酸性电解质制备具有2 V稳定高工作电压的对称水超级电容器

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摘要

Aqueous symmetric carbon‐based supercapacitors (CSCs) are always the research focus for energy storage devices because of the virtue of low cost, inherent safety, and encouraging electrochemical stability. As is well‐known, so far most aqueous symmetric CSCs are subjected to low energy densities. Here, a symmetric supercapacitor comprising electrodes from biomass‐derived activated carbon and alkaline–acidic electrolyte is reported. This aqueous symmetric CSC demonstrates exceptional electrochemical performance with high stable working voltage of 2 V and attractive cycling stability of no capacitance loss over 10 000 cycles. Impressively, it shows a remarkable energy density of 36.9 W h kg at 248 W kg based on the total mass of the active materials, which is much higher than traditional aqueous symmetric CSCs, and a power density of 4083 W kg with an energy density of 8.8 W h kg . The use of stable alkaline–acidic electrolyte provides an innovative technique to enhance the energy density of aqueous supercapacitors.
机译:水性对称碳基超级电容器(CSC)一直是储能设备的研究重点,因为它具有成本低,固有安全性高以及电化学稳定性高的优点。众所周知,到目前为止,大多数水对称CSC的能量密度都很低。在这里,报道了一种对称超级电容器,该超级电容器包括生物质衍生的活性炭和碱性酸性电解质的电极。这种水对称CSC表现出卓越的电化学性能,具有2 V的高稳定工作电压和有吸引力的循环稳定性,在10 000次循环中无电容损失。令人印象深刻的是,基于活性物质的总质量,它在248 W kg的功率下显示出36.9 W h kg的显着能量密度,远高于传统的水对称CSC,其功率密度为4083 W kg,能量密度为8.8瓦时千克。稳定的碱性-酸性电解质的使用提供了一种创新的技术,可以提高水性超级电容器的能量密度。

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