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Carbonate-modified siloxanes as solvents of electrolyte solutions for rechargeable lithium cells

机译:碳酸酯改性的硅氧烷作为可充电锂电池电解液的溶剂

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摘要

Influence of mixing carbonate-modified siloxanes into LiPF6-ethylene carbonate (EC)/ethylmethyI carbonate (EMC) (mixing volume ratio = 3:7) mixed solvent electrolytes on charge-discharge cycling properties of lithium was examined. As the solute, 1 M (M: mol L~(-1)) LiPF_6 was used. As siloxanes, 4-(2-trirnethylsilyloxydirnethylsilylethyl)-l,3-dioxolan-2-one and 4-(2-bis(trimethyl-silyloxy)methylsilylethyl )-1,3-dioxolan-2-one were investigated. These siloxanes are derivatives of buty-lene cyclic carbonate or vinyl ethylene carbonate. Charge-discharge cycling efficiencies of lithium metal anodes improved and an impedance of anode/electrolyte interface decreased by mixing siloxanes, compared with those in 1 M LiPF_6-EC/MEC alone. Slightly better cycling behavior of natural graphite anode was obtained by adding siloxanes. Si-C/LiCoO_2 cells exhibited better anode utilization and good cycling performance by using 1 M LiPF_6,-EC/MEC + siloxane electrolytes. Thermal behavior of electrolyte solutions toward graphite-lithium anodes was evaluated with a differential scanning calorimeter. By adding siloxanes, temperature starting the large heat-output of graphite-lithium anodes with 1 M LiPF_6-EC/MEC electrolyte solutions shifted to higher temperature about 100℃. However, amount of heat-output did not decrease by adding siloxanes.
机译:考察了将碳酸酯改性的硅氧烷混入碳酸锂PF6(EC)/碳酸乙基甲基碳酸酯(EMC)(混合体积比= 3:7)对锂的充放电循环性能的影响。使用1 M(M:mol L〜(-1))LiPF_6作为溶质。作为硅氧烷,研究了4-(2-三乙基甲硅烷基氧基二乙基乙基甲硅烷基乙基)-1,3-二氧戊环-2-酮和4-(2-双(三甲基-甲硅烷氧基)甲基甲硅烷基乙基)-1,3-二氧戊环-2-酮。这些硅氧烷是丁烯酸环状碳酸酯或碳酸乙烯基亚乙酯的衍生物。与单独使用1 M LiPF_6-EC / MEC相比,通过混合硅氧烷,锂金属阳极的充放电循环效率得到提高,阳极/电解质界面的阻抗降低。通过添加硅氧烷,天然石墨阳极的循环性能略好。通过使用1 M LiPF_6,-EC / MEC +硅氧烷电解质,Si-C / LiCoO_2电池具有更好的阳极利用率和良好的循环性能。用差示扫描量热仪评估电解质溶液对石墨-锂阳极的热行为。通过添加硅氧烷,用1 M LiPF_6-EC / MEC电解质溶液开始大量加热石墨-锂阳极的温度转移到约100℃的更高温度。但是,通过添加硅氧烷,发热量没有降低。

著录项

  • 来源
    《Journal of power sources》 |2009年第2期|580-587|共8页
  • 作者单位

    Department of Chemistry. Faculty of Engineering, Cunma University, Kiryu, Cunma, 376-8515, Japan;

    Department of Chemistry. Faculty of Engineering, Cunma University, Kiryu, Cunma, 376-8515, Japan;

    Department of Chemistry. Faculty of Engineering, Cunma University, Kiryu, Cunma, 376-8515, Japan;

    Department of Chemistry. Faculty of Engineering, Cunma University, Kiryu, Cunma, 376-8515, Japan;

  • 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 cell; electrolyte; rechargeable cell; siloxane; cell safety; cycling efficiency;

    机译:锂电池电解质可充电电池硅氧烷;电池安全性;循环效率;

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