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Energy-Density Improvement in Li-Ion Rechargeable Batteries Based on LiCoO 2 + LiV 3 O 8 and Graphite + Li-Metal Hybrid Electrodes

机译:基于LiCoO 2 + LiV 3 O 8和石墨+锂金属混合电极的锂离子充电电池的能量密度提高

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We developed a novel battery system consisting of a hybrid (LiCoO 2 + LiV 3 O 8 ) cathode in a cell with a hybrid (graphite + Li-metal) anode and compared it with currently used systems. The hybrid cathode was synthesized using various ratios of LiCoO 2 :LiV 3 O 8 , where the 80:20 wt% ratio yielded the best electrochemical performance. The graphite and Li-metal hybrid anode, the composition of which was calculated based on the amount of non-lithiated cathode material (LiV 3 O 8 ), was used to synthesize a full cell. With the addition of LiV 3 O 8 , the discharge capacity of the LiCoO 2 + LiV 3 O 8 hybrid cathode increased from 142.03 to 182.88 mA h g ?1 (a 28.76% improvement). The energy density of this cathode also increased significantly, from 545.96 to 629.24 W h kg ?1 (a 15.21% improvement). The LiCoO 2 + LiV 3 O 8 hybrid cathode was characterized through X-ray diffraction analysis, scanning electron microscopy, and energy-dispersive X-ray spectroscopy. Its electrochemical performance was analyzed using a battery-testing system and electrochemical impedance spectroscopy. We expect that optimized synthesis conditions will enable the development of a novel battery system with an increase in energy density and discharge capacity.
机译:我们开发了一种新颖的电池系统,该系统由电池中的混合(LiCoO 2 + LiV 3 O 8)阴极和混合(石墨+ Li-金属)阳极组成,并将其与当前使用的系统进行了比较。使用各种比例的LiCoO 2:LiV 3 O 8合成杂化阴极,其中80:20 wt%的比例产生最佳的电化学性能。石墨和锂金属杂化阳极的合成是基于非锂化正极材料(LiV 3 O 8)的量计算的,用于合成整个电池。通过添加LiV 3 O 8,LiCoO 2 + LiV 3 O 8混合阴极的放电容量从142.03增加到182.88 mA h g?1(提高了28.76%)。该阴极的能量密度也显着提高,从545.96 W h kg·1增加到15.21%(提高了15.21%)。通过X射线衍射分析,扫描电子显微镜和能量色散X射线光谱对LiCoO 2 + LiV 3 O 8混合阴极进行了表征。使用电池测试系统和电化学阻抗谱分析了其电化学性能。我们期望优化的合成条件将使新型电池系统的开发具有更高的能量密度和放电容量。

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