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Performance Of Li-ion Secondary Batteries In Low Power, Hybrid Power Supplies

机译:低功率混合电源中锂离子二次电池的性能

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摘要

Small, portable electronic devices need power supplies that have long life, high energy efficiency, high energy density, and can deliver short power bursts. Hybrid power sources that combine a high energy density fuel cell, or an energy scavenging device, with a high power secondary battery are of interest in sensors and wireless devices. However, fuel cells with low self-discharge have low power density and have a poor response to transient loads. A low capacity secondary lithium ion cell can provide short burst power needed in a hybrid fuel cell-battery power supply. This paper describes the polarization, cycling, and self-discharge of commercial lithium ion batteries as they would be used in the small, hybrid power source. The performance of 10 Li-ion variations, including organic electrolytes with Li_xV_2O_5 and Li_xMn_2O_4 cathodes and UPON electrolyte with a LiCoO_2 cathode was evaluated. Electrochemical characterization shows that the vanadium oxide cathode cells perform better than their manganese oxide counterparts in every category. The vanadium oxide cells also show better cycling performance under shallow discharge conditions than LiPON cells at a given current. However, the LiPON cells show significantly lower energy loss due to polarization and self-discharge losses than the vanadium and manganese cells with organic electrolytes.
机译:小型便携式电子设备需要具有长寿命,高能效,高能量密度并能提供短功率突发的电源。将高能量密度燃料电池或能量清除装置与高功率二次电池相结合的混合动力源在传感器和无线设备中受到关注。然而,具有低自放电的燃料电池具有低功率密度,并且对瞬态负载的响应较差。低容量二次锂离子电池可提供混合燃料电池-电池电源所需的短脉冲功率。本文描述了商用锂离子电池的极化,循环和自放电,因为它们将在小型混合动力电源中使用。评估了10个锂离子变体的性能,包括带有Li_xV_2O_5和Li_xMn_2O_4阴极的有机电解质以及带有LiCoO_2阴极的UPON电解质。电化学表征表明,在所有类别中,钒氧化物阴极电池的性能均优于其锰氧化物。在给定电流下,氧化钒电池在浅放电条件下的循环性能也优于LiPON电池。然而,与具有有机电解质的钒电池和锰电池相比,由于极化和自放电损失,LiPON电池显示出明显更低的能量损耗。

著录项

  • 来源
    《Journal of power sources》 |2009年第2期|1184-1189|共6页
  • 作者单位

    School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0100, United States;

    Department of Chemical. Materials and Biomolecular Engineering, University of Connecticut, Storrs, CT 06269, United States;

    School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0100, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lithium; ion; battery; hybrid; power; SOURCE;

    机译:锂;离子;电池;混合动力;电源;电源;
  • 入库时间 2022-08-18 00:25:43

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