首页> 外文会议>ASME international mechanical engineering congress and exposition >ENHANCING THE STORAGE CAPACITY OF SUPERCAPACITORS USING PVA/CNT NANOCOMPOSITE ELECTROLYTES
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ENHANCING THE STORAGE CAPACITY OF SUPERCAPACITORS USING PVA/CNT NANOCOMPOSITE ELECTROLYTES

机译:使用PVA / CNT纳米复合电解质增强超级电容器的存储容量

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The ability to achieve high surface areas with nanomaterials brought several advancements in energy storage devices and their applications in different industries. Supercapacitors, a new generation of energy storage devises, have quick charge and discharge abilities, and hold as much energy as batteries and other chemical storage devices. The present study focuses on the effects of carbon nanotubes (CNTs) inclusions in polyvinyl alcohol (PVA) electrolytes for the improved capacitance values, which may affect the lifetime, charge holding, and charging and discharging rates of the graphene nanoflake-based supercapacitors. In this research, various supercapacitors were constructed using the reduced graphene oxide nanoflakes, PVA and PVA incorporated with CNTs, and the best candidates were selected for the future considerations. The test results showed that the CNT concentrations of 0.1-1.0wt% in PVA enhanced the capacitance (charge holding capacity) and reduced the internal resistance of the electrolytes significantly. This study may open up new possibilities for the supercapacitors and other energy storage devices currently under developments.
机译:利用纳米材料实现高表面积的能力带来了储能装置及其在不同行业中的应用方面的多项进步。超级电容器是新一代的储能设备,具有快速的充电和放电能力,并且可以容纳与电池和其他化学存储设备一样多的能量。本研究集中在聚乙烯醇(PVA)电解质中碳纳米管(CNTs)夹杂物对改善电容值的影响,这可能会影响基于石墨烯纳米薄片的超级电容器的寿命,电荷保持以及充放电速率。在这项研究中,使用还原的氧化石墨烯纳米薄片,PVA和与CNT结合的PVA构造了各种超级电容器,并为将来的考虑选择了最佳的电容器。测试结果表明,PVA中的CNT浓度为0.1-1.0wt%可以显着提高电容(电荷保持能力)并降低电解质的内阻。这项研究可能为目前正在开发的超级电容器和其他储能设备开辟新的可能性。

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