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Hydrothermally Driven Transformation of Oxygen Functional Groups at Multiwall Carbon Nanotubes for Improved Electrocatalytic Applications

机译:水热驱动的氧在多壁碳纳米管上的官能团的转化,以改善电催化应用

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The role of carbon nanotubes in the advancement of energy conversion and storage technologies is undeniable. In particular, carbon nanotubes have attracted significant applications for electrocatalysis. However, one central issue related to the use of carbon nanotubes is the required oxidative pretreatment that often leads to significant damage of graphitic structures which deteriorates their electrochemical properties. Traditionally, the oxidized carbon nanomaterials are treated at high temperature under an inert atmosphere to repair the oxidation-induced defect sites, which simultaneously removes a significant number of oxygen functional groups. Nevertheless, recent studies have shown that oxygen functional groups on the surface of MWCNT are the essential active centers for a number of important electrocatalytic reactions such as hydrogen evolution reaction (HER), oxygen evolution reaction (OER), and oxygen reduction reaction (ORR). Herein we first show that hydrothermal treatment as a mild method to improve the electrochemical properties and activities of surface-oxidized MWCNT for OER, HER, and ORR without significantly altering the oxygen content. The results indicate that hydrothermal treatment could potentially repair the defects without significantly reducing the pre-existing oxygen content, which has never been achieved before with conventional high temperature annealing treatment.
机译:不可否认,碳纳米管在能量转换和存储技术发展中的作用。特别地,碳纳米管已经吸引了电催化的重要应用。然而,与碳纳米管的使用有关的一个主要问题是所需的氧化预处理,该氧化预处理通常导致石墨结构的显着损坏,这损害了它们的电化学性能。传统上,将氧化的碳纳米材料在惰性气氛下于高温下进行处理,以修复由氧化引起的缺陷部位,同时去除大量的氧官能团。然而,最近的研究表明,MWCNT表面的氧官能团是许多重要的电催化反应(如析氢反应(HER),析氧反应(OER)和氧还原反应(ORR))的重要活性中心。 。在本文中,我们首先表明水热处理是一种温和的方法,可以改善OER,HER和ORR的表面氧化MWCNT的电化学性能和活性,而不会显着改变氧含量。结果表明,水热处理可以潜在地修复缺陷,而不会显着降低预先存在的氧含量,这是常规高温退火处理之前从未达到的。

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