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A hybrid supercapacitor fabricated with a carbon nanotube cathode and a TiO2-B nanowire anode

机译:由碳纳米管阴极和TiO2-B纳米线阳极制造的混合超级电容器

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摘要

Recently, a new hybrid supercapacitor, integrating both the advantages of supercapacitors and lithium-ion batteries, was produced and rapidly turned into state-of-the-art energy-store devices with a high energy density, fast power capability, and a long cycle life. In this paper, a new hybrid supercapacitor is fabricated by making use of the benefits of 1D nanomaterials consisting of a carbon nanotube (CNT) cathode and TiO2-B nanowire (TNW) anode, and the preliminary results for such an energy-storage device operating over a wide voltage range (0-2.8 V) are presented. The CNT-TNW supercapacitor, voltage profiles, and cycle life. On the basis of the total weight of both active materials, the CNT-TNW supercapacitor, while maintaining desirable cycling stability. The combination of a CNT cathode and a TNW anode in a non-aqueous electrolyte is proven to be suitable for high-performance hybrid supercapacitor applications; this can reasonably be assigned to the interesting synergistic effects of the two nanomaterials. It is hoped that the results presented in this study might renew interest in the design of nanomaterials. It is hoped that the results presented in this study might renew interest in the design of nanomaterials that are applicable not only to hybrid that the results presented in this study might renew interest in the design of nanomaterials that are applicable not only to hybrid supercapacitors, but also to energy conversion and storage applications of the future.
机译:最近,结合了超级电容器和锂离子电池优点的新型混合超级电容器被生产出来,并迅速转变为具有高能量密度,快速功率能力和长周期的先进储能设备。生活。本文利用碳纳米管(CNT)阴极和TiO2-B纳米线(TNW)阳极组成的一维纳米材料的优势,制备了一种新型混合超级电容器,并研究了这种储能装置的初步运行结果。给出了一个很宽的电压范围(0-2.8 V)。 CNT-TNW超级电容器,电压曲线和循环寿命。基于两种活性材料的总重量,CNT-TNW超级电容器,同时保持了理想的循环稳定性。在非水电解质中结合使用CNT阴极和TNW阳极已被证明适用于高性能混合超级电容器应用;这可以合理地分配给两种纳米材料有趣的协同效应。希望这项研究中提出的结果可能会重新引起人们对纳米材料设计的兴趣。希望本研究提出的结果可能会重新引起人们对不仅适用于混合材料的纳米材料设计的兴趣,而本研究提出的结果可能会使对不仅适用于混合超级电容器的纳米材料设计产生新的兴趣。也适用于未来的能量转换和存储应用。

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