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Sustainable supercapacitor components from cellulose

机译:来自纤维素的可持续超级电容器组件

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Supercapacitors with superb electrochemical characteristics are very promising energy storage devices. At present, the production of various supercapacitor components is mostly dependent on unsustainable fossil resources. The preferential sustainable production of these components can be achieved with more extensive utilization of abundant renewable resources instead of fossils. In this study, cellulose-derived electrodes and separators were synthesized and electrochemically evaluated in a supercapacitor device. This device showed the following results: aerial capacitance of 64 μF cm, fast current-voltage response below 15s at current density of 2 A g and capacitance retention of 97.9% after 2000 charge-discharge cycles.
机译:具有精湛电化学特性的超级电容器是非常有前途的能量存储装置。目前,各种超级电容器组分的生产主要取决于不可持续的化石资源。这些组件的优惠可持续生产可以通过更广泛的利用丰富的可再生资源而不是化石来实现。在该研究中,在超级电容器装置中合成并电化学评估纤维素衍生的电极和分离器。该装置显示出以下结果:64μFCM的空中电容,电流 - 电压响应低于15s,电流密度为2Ag,电容保留为2000次电荷放电循环后97.9%。

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