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首页> 外文期刊>Journal of power sources >A kinetics and equilibrium study of vanadium dissolution from vanadium oxides and phosphates in battery electrolytes: Possible impacts on ICD battery performance
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A kinetics and equilibrium study of vanadium dissolution from vanadium oxides and phosphates in battery electrolytes: Possible impacts on ICD battery performance

机译:动力学和平衡研究钒从电池电解质中的钒氧化物和磷酸盐中溶出的可能性:对ICD电池性能的可能影响

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摘要

Silver vanadium oxide (Ag_2V_4O_(11), SVO) has enjoyed widespread commercial success over the past 30 years as a cathode material for implantable cardiac defibrillator (ICD) batteries. Recently, silver vanadium phosphorous oxide (Ag_2VO_2PO_4, SVPO) has been studied as possibly combining the desirable thermal stability aspects of LiFeP04 with the electrical conductivity of SVO. Further, due to the noted insoluble nature of most phosphate salts, a lower material solubility of SVPO relative to SVO is anticipated. Thus, the first vanadium dissolution studies of SVPO in battery electrolyte solutions are described herein. The equilibrium solubility of SVPO was ~5 times less than SVO, with a rate constant of dissolution ~3.5 times less than that of SVO. The vanadium dissolution in SVO and SVPO can be adequately described with a diffusion-layer model, as supported by the Noyes-Whitney equation. Cells prepared with vanadium-treated anodes displayed higher AC impedance and DC resistance relative to control anodes. These data support the premise that SVPO cells are likely to exhibit reduced cathode solubility and thus are less affected by increased cell resistance due to cathode solubility compared to SVO based cells.
机译:在过去的30年中,氧化钒银(Ag_2V_4O_(11),SVO)作为植入式心脏除颤器(ICD)电池的阴极材料已获得了广泛的商业成功。最近,银钒磷氧化物(Ag_2VO_2PO_4,SVPO)已被研究为可能将LiFePO4的理想热稳定性方面与SVO的电导率相结合。此外,由于大多数磷酸盐的不溶性,预计SVPO相对于SVO的材料溶解度较低。因此,本文描述了SVPO在电池电解质溶液中的首次钒溶解研究。 SVPO的平衡溶解度比SVO小〜5倍,溶出速率常数比SVO小〜3.5倍。如Noyes-Whitney方程所支持的,可以使用扩散层模型充分描述SVO和SVPO中的钒溶解度。与对照阳极相比,用钒处理过的阳极制备的电池显示出更高的交流阻抗和直流电阻。这些数据支持这样的前提,即与基于SVO的电池相比,SVPO电池可能表现出降低的阴极溶解度,因此受阴极溶解度的影响,不受电池电阻增加的影响。

著录项

  • 来源
    《Journal of power sources》 |2013年第1期|219-225|共7页
  • 作者单位

    Department of Chemistry, Stony Brook University, Advanced Energy Center, 1000 innovation Road, Stony Brook, NY 11794, USA;

    Department of Chemistry, Stony Brook University, Advanced Energy Center, 1000 innovation Road, Stony Brook, NY 11794, USA,Department of Materials Science and Engineering, Stony Brook University, Advanced Energy Center, 1000 Innovation Road, Stony Brook, NY 11794, USA;

    Department of Chemistry, Stony Brook University, Advanced Energy Center, 1000 innovation Road, Stony Brook, NY 11794, USA;

    Department of Chemistry, Stony Brook University, Advanced Energy Center, 1000 innovation Road, Stony Brook, NY 11794, USA,Department of Materials Science and Engineering, Stony Brook University, Advanced Energy Center, 1000 Innovation Road, Stony Brook, NY 11794, USA,Global and Regional Solutions Directorate, Brookhaven National Laboratory, Upton, NY 11973, USA;

  • 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

    primary battery; lithium battery; implantable cardiac defibrillator; solubility; dissolution;

    机译:原电池;锂电池植入式心脏除颤器;溶解度解散;

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