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Unraveling the relevance of carbon felts surface modification during electrophoretic deposition of nanocarbons on their performance as electrodes for the VO~(2+) /VO_2~+ redox couple

机译:揭示碳纤维表面改性在纳米碳电泳期间的相关性,纳米碳沉积在vo〜(2+)/ vo_2〜+氧化还原耦合的电极

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摘要

The energy efficiency of vanadium redox flow batteries (VRFB) greatly depends on the electrochemical performance of the electrodes that constitute these devices, so it is essential to develop more efficient electrode materials with optimized structure and physicochemical properties. Carbon-based felts are commonly used as electrodes in such devices due to their high chemical stability in acid media, high electrical conductivity and their three-dimensional structure. However, they show low reversibility and electrocatalytic activity, especially for the VO2+ / VO2+ redox couple. In the quest for improving the electrochemical behaviour of carbon-based felts, it has been proposed to modify them with functionalized carbon nanotubes or graphene oxide by electrophoretic deposition. To elucidate if the improvements achieved on these electrodes can be really ascribed to the presence of the carbon nanomaterials or to the oxidation undergone by the fibers during this treatment, the electro-oxidation of a pristine rayon-based graphitized carbon felt was performed in parallel. The electro-oxidized felt exhibits the best behaviour, suggesting that the improved performance obtained for the electrodes modified with nanocarbons are mainly influenced by the oxidation of the fibers.
机译:钒氧化还原流量电池(VRFB)的能效大大取决于构成这些装置的电极的电化学性能,因此必须具有优化的结构和物理化学性质的更有效的电极材料。由于酸介质,高导电性和三维结构的高化学稳定性,碳基纤维通常用作这种装置中的电极。然而,它们显示出低可逆性和电催化活动,特别是对于VO2 + / VO2 +氧化还原夫妇。在寻求改善碳纤维的电化学行为中,已经提出通过电泳沉积用官能化碳纳米管或石墨烯来改变它们。为了阐明在该处理期间可以真正归因于这些电极的改进或通过纤维在该处理期间通过纤维经过氧化而苛刻的氧化而言,并联进行原始式基于人造丝的石墨化碳的电氧化。电氧化毛毡具有最佳的行为,表明用纳米碳改性的电极获得的改进性能主要受纤维氧化的影响。

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