首页> 外文会议>Meeting of the Electrochemical Society;International Meeting on Chemical Sensors >Low-Tortuosity, Highly Conductive, Vertically Aligned, Ultra-Thick Composite Electrode Design for Batteries
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Low-Tortuosity, Highly Conductive, Vertically Aligned, Ultra-Thick Composite Electrode Design for Batteries

机译:低曲折,导电,垂直对齐,电池的超厚复合电极设计

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Ultra-think electrode is very important for high-energy batteries. It requires to increase the volume ratio of active material to inactive material and to improve the electrochemical reaction kinetics with low-tortuous ion and electron transfer pathways. In this talk, I will introduce a vertically aligned carbon fibers framework to structurally and electrically reinforce electrode structure to obtain high conductivity and low tortuosity. Compared with the traditional LFP electrodes composed of randomly dispersed LFP particles and carbon black particles, the CF-LFP electrodes show significant improvements in active material loading, structural stability and electrochemical performance due to the unique vertical arrangement of carbon fibers inside composite electrode. Because the vertical arrangement of carbon fibers provides a fast electron/ion transport channel, it promotes the redox reaction kinetics in the electrodes. CF-LFP electrodes significantly enhance the capacity and rate capability. The thickness of the electrode can be up to 1 mm with a loading of ~128 mg/cm~2 and a specific capacity of 154 mAh/g.
机译:超思维电极对高能量电池非常重要。它需要将活性材料的体积比提高到非活性材料,并用低曲折离子和电子转移途径改善电化学反应动力学。在该谈话中,我将在结构上和电增强电极结构将垂直对准的碳纤维框架引入,以获得高导电性和低曲折性。与随机分散的LFP颗粒和炭黑颗粒组成的传统LFP电极相比,CF-LFP电极由于复合电极内的碳纤维的独特垂直布置而显着改善了活性材料负载,结构稳定性和电化学性能。因为碳纤维的垂直布置提供了快速电子/离子传输通道,所以它促进了电极中的氧化还原反应动力学。 CF-LFP电极显着提高了容量和速率能力。电极的厚度可高达1mm,负载〜128mg / cm〜2的载荷和154mah / g的特定容量。

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