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Compact supercapacitor based on narrow diameter SWCNTs and its calculation of surface area and capacitance

机译:基于窄直径SWCNT的紧凑型超级电容器及其表面积和电容计算

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Supercapacitor is the fastest growing technology which is playing very effective part in energy storage devices. They are capable of delivering high power and energy. Among abundant available high surface area carbon materials, carbon nanotubes (CNTs) are utilized as electrode material in supercapacitors because of their regular structure which provides easy access to ions to store electric energy. CNTs with larger diameters are used in supercapacitor but they provide less density of tubes in volume which results in smaller capacitance value. Smaller diameter CNTs not only increases the density of the tubes but also increase storage capability of device. In this work we present the calculation of surface area and capacitance of 1 nm small diameter single walled carbon nanotubes (SWCNTs). Accelrys material studio was used to build the SWCNTs and to calculate the different parameters. Result show that not only the density of SWCNTs on the substrate was increased but also high capacitance values were observed as compared to the larger diameter tubes.
机译:超级电容器是增长最快的技术,这些技术在储能设备中扮演非常有效的部分。它们能够提供高功率和能量。在丰富的可用高表面积碳材料中,由于它们的规则结构,碳纳米管(CNT)用作超级电容器中的电极材料,这提供了容易进入离子来存储电能。具有较大直径的CNT在超级电容器中使用,但它们在体积中提供较少的管子,导致电容值较小。较小的直径CNT不仅增加了管的密度,而且增加了装置的存储能力。在这项工作中,我们呈现了表面积和1nm小直径单壁碳纳米管(SWCNT)的表面积和电容的计算。 Accelrys Material Studio用于构建SWCNT,并计算不同的参数。结果表明,与较大直径管相比,不仅增加了基板上的SWCNT的密度也增加了,而且观察到高电容值。

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