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首页> 外文期刊>Journal of power sources >An improved thin-film electrode for vanadium redox flow batteries enabled by a dual layered structure
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An improved thin-film electrode for vanadium redox flow batteries enabled by a dual layered structure

机译:通过双层结构实现的用于钒氧化还原液流电池的改进的薄膜电极

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摘要

The thin-film electrode has been regarded as one of the desirable options for the vanadium redox flow battery. However, most of the thin-film electrodes developed to date suffer from high mass transport resistance and deliver unsatisfactory performance. In this work, we proposed a dual-layer thin-film electrode, consisting of a backing layer and a catalyst layer, for flow batteries. The backing layer with larger pores is adapted to improve the concentration distribution as well as to provide mechanical support while the catalyst layer with smaller pores provides sufficient active sites. The electrospun fiber mat is adopted as catalyst layer and backing layers in the study include carbon paper, carbon cloth and graphite felt. It is showed that carbon cloth supported electrospun fiber mat electrode demonstrates an energy efficiency of 76.1% at the current density of 240 mA cm(-2), which is much higher that achieved by conventional electrospun fiber mat electrodes (61.9%). After optimizations of flow field designs and key operational parameters, the energy efficiency of battery with dual-layer structured electrodes can reach as high as 80.2% at a current density of 240 mA cm(-2). In addition, the present battery can stably operate for more than 800 cycles without obvious decay.
机译:薄膜电极已被视为钒氧化还原液流电池的理想选择之一。然而,迄今为止开发的大多数薄膜电极都具有高的传质阻力并且不能令人满意地提供性能。在这项工作中,我们提出了一种用于液流电池的双层薄膜电极,该薄膜电极由背衬层和催化剂层组成。具有较大孔的背衬层适于改善浓度分布并提供机械支撑,而具有较小孔的催化剂层提供足够的活性位点。研究中采用电纺纤维毡作为催化剂层,背衬层包括碳纸,碳布和石墨毡。结果表明,碳布支撑的电纺纤维毡电极在240 mA cm(-2)的电流密度下显示出76.1%的能量效率,这比常规电纺纤维毡电极所能达到的效率(61.9%)高得多。经过对流场设计和关键操作参数的优化,具有双层结构化电极的电池的能量效率在240 mA cm(-2)的电流密度下可以达到80.2%。另外,本发明的电池可以稳定地工作超过800个循环而不会出现明显的衰减。

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