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General Growth of Carbon Nanotubes for Cerium Redox Reactions in High-Efficiency Redox Flow Batteries

机译:高效氧化还原液流电池中用于铈还原反应的碳纳米管的一般生长

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摘要

Carbon nanotubes (CNTs) possess remarkable mechanical, electrical, thermal, and optical properties that predestine them for numerous potential applications. The conventional chemical vapor deposition (CVD) route for the production of CNTs, however, suffers from costly and complex issues. Herein, we demonstrate a general and high-yield strategy to grow nitrogen-doped CNTs (NCNTs) on three-dimensional (3D) graphite felt (GF) substrates, through a direct thermal pyrolysis process simply using a common tube furnace, instead of the costly and complex CVD method. Specifically, the NCNTs-decorated GF (NCNT-GF) electrode possesses enhanced electrocatalytic performance towards cerium redox reactions, mainly due to the catalytic effect of N atoms doped into NCNTs, and ingenious and hierarchical 3D architecture of the NCNT-GF. As a result, the cell with the NCNT-GF serving as a positive electrode shows the improved energy efficiency with increases of about 53.4% and 43.8% over the pristine GF and the acidly treated GF at a high charge/discharge rate of 30 mA cm , respectively. Moreover, the as-prepared NCNT catalyst-enhanced electrode is found to be highly robust and should enable a long-term cycle without detectable efficiency loss after 500 cycles. The viable synthetic strategy reported in this study will contribute to the further development of more active heteroatom-doped CNTs for redox flow batteries.
机译:碳纳米管(CNT)具有非凡的机械,电,热和光学特性,是许多潜在应用中必不可少的。然而,用于生产CNT的常规化学气相沉积(CVD)路线存在昂贵且复杂的问题。本文中,我们演示了一种简单而通用的高产策略,即通过简单地使用普通管式炉(而不是普通的管式炉)通过直接热解工艺在三维(3D)石墨毡(GF)衬底上生长掺氮CNT(NCNT)。昂贵且复杂的CVD方法。具体而言,修饰NCNTs的GF(NCNT-GF)电极对铈的氧化还原反应具有增强的电催化性能,这主要归因于掺杂到NCNTs中的N原子的催化作用以及NCNT-GF的巧妙和层次化的3D结构。结果,以NCNT-GF作为正极的电池在30 mA / cm的高充电/放电速率下显示出比原始GF和酸处理的GF高的能量效率,分别比原始GF和酸处理的GF增加约53.4%和43.8%。 , 分别。而且,发现所制备的NCNT催化剂增强的电极非常坚固并且应能够进行长期循环而在500次循环后没有可检测到的效率损失。这项研究报告的可行的合成策略将有助于进一步开发用于氧化还原液流电池的更具活性的杂原子掺杂CNT。

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