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Highly-conductive composite bipolar plate based on ternary carbon materials and its performance in redox flow batteries

机译:基于三元碳材料的高导电复合双极板及其在氧化还原液流电池中的性能

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摘要

Redox flow battery has become one of the most promising technologies for large-scale energy storage. However, as a key component, bipolar plate is still under development to achieve high electrical conductivity and sufficient flexural strength simultaneously. With this purpose, an innovative low-carbon-content bipolar plate with hybrid conductive materials of graphene, carbon fibers and graphite powders are prepared. Morphology, flexural strength, electrical conductivity, corrosion resistance, vanadium permeability and single cell performance are studied and discussed. Extremely low area specific resistance (5.0 m Omega cm(2)) and high in-plane electrical conductivity (420.6 S cm(-1)) are achieved at an ultra-low carbon content of 25 wt%. The voltage efficiency and energy efficiency of the vanadium redox flow battery unit cell reach as high as 88.0% and 85.9%, respectively, at 100 mA cm(-2). The low-carbon-content bipolar plate turns to be promising for the massive application in redox flow batteries. (C) 2020 Elsevier Ltd. All rights reserved.
机译:氧化还原液流电池已成为用于大规模能量存储的最有前途的技术之一。然而,作为关键部件,双极板仍在开发中以同时实现高电导率和足够的抗弯强度。为此目的,制备了具有石墨烯,碳纤维和石墨粉的混合导电材料的创新的低碳含量双极板。研究并讨论了形貌,弯曲强度,电导率,耐腐蚀性,钒的渗透性和单电池性能。在25 wt%的超低碳含量下,可实现极低的面积比电阻(5.0 m Omega cm(2))和高的面内导电率(420.6 S cm(-1))。在100 mA cm(-2)时,钒氧化还原液流电池单电池的电压效率和能量效率分别高达88.0%和85.9%。低碳含量的双极板有望在氧化还原液流电池中得到广泛应用。 (C)2020 Elsevier Ltd.保留所有权利。

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