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Vertically-aligned BCN Nanotube Arrays with Superior Performance in Electrochemical capacitors

机译:垂直排列的BCN纳米管阵列在电化学电容器中具有出色的性能

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摘要

Electrochemical capacitors (EC) have received tremendous interest due to their high potential to satisfy the urgent demand in many advanced applications. The development of new electrode materials is considered to be the most promising approach to enhance the EC performance substantially. Herein, we present a high-capacity capacitor material based on vertically-aligned BC2N nanotube arrays (VA-BC2NNTAs) synthesized by low temperature solvothermal route. The obtained VA-BC2NNTAs display the good aligned nonbuckled tubular structure, which could indeed advantageously enhance capacitor performance. VA-BC2NNTAs exhibit an extremely high specific capacitance, 547 Fg−1, which is about 2–6 times larger than that of the presently available carbon-based materials. Meanwhile, VA-BC2NNTAs maintain an excellent rate capability and high durability. All these characteristics endow VA-BC2NNTAs an alternative promising candidate for an efficient electrode material for electrochemical capacitors (EC).
机译:电化学电容器(EC)的潜力很大,可以满足许多高级应用中的紧迫需求,因此备受关注。新型电极材料的开发被认为是大幅提高EC性能的最有前途的方法。本文中,我们提出了一种基于低温溶剂热途径合成的垂直排列的BC2N纳米管阵列(VA-BC2NNTAs)的高容量电容器材料。所获得的VA-BC2NNTA显示出良好的取向非屈曲管状结构,这确实可以有利地提高电容器性能。 VA-BC2NNTAs具有极高的比电容,为547 Fg -1 ,比目前可用的碳基材料大2–6倍。同时,VA-BC2NNTA保持出色的速率能力和高耐久性。所有这些特性使VA-BC2NNTAs成为电化学电容器(EC)的高效电极材料的替代候选物。

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