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A new type of cyclic silicone additive for improving the energy density and power density of Li-O-2 batteries

机译:一种新型的循环硅氧烷添加剂,用于提高Li-O-2电池的能量密度和功率密度

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摘要

In this work, a novel electrolyte additive, octamethylcyclotetrasiloxane (OMTS), is applied to Li-O-2 batteries to increase their practical discharge capacity and also their rate capability. By adding OMTS into a tetraethylene glycol dimethoxyethane (TEGDME)-based electrolyte, the solubility of oxygen increases significantly, and the ionic conductivity and viscosity remain the same. Li-7 nuclear magnetic resonance (NMR) spectra show that the Li-7 peak shifts downfield when adding OMTS to the electrolyte, indicating the increment of the solvation of Li+ in the electrolyte. The electrochemical tests show that, with an optimal OMTS content (10 vol% OMTS), the cell displays a high discharge capacity of 6778 mA h g(-1) at 0.05 mA cm(-2). Its capacity retention is more than double that of the cell with no OMTS additive at a large current density of 1 mA cm(-2). Further NMR and Li2O2 yield measurements during discharge indicate that the OMTS additive does not alter the discharge product, or compromise the stability of the TEGDME electrolyte. The great increment in energy density and power density could be attributed to the high oxygen solubility and increment of solvated Li+, leading to the formation of more nodular products, as observed by scanning electron microscopy (SEM).
机译:在这项工作中,将新型电解质添加剂,八甲基环四硅氧烷(OMTS)应用于Li-O-2电池,以增加其实际放电容量以及它们的速率能力。通过将OMTS加入到四甘醇二甲氧基乙烷(TEGDME)的电解质中,氧的溶解度显着增加,离子电导率和粘度保持不变。 Li-7核磁共振(NMR)光谱表明,Li-7峰值在向电解质中加入OMTS时移位,表明Li +在电解质中的溶剂溶液的增量。电化学测试表明,通过最佳OMTS含量(10VOL%OMTS),电池在0.05 mA cm(-2)时显示6778mA H(-1)的高放电容量。其容量保持不仅大于细胞的两倍,没有om4s添加剂,其电流密度为1 mA cm(-2)。进一步的NMR和Li 2 O 2在放电期间的产量测量表明OMTS添加剂不会改变放电产品,或损害TEGDME电解质的稳定性。能量密度和功率密度的巨大增量可归因于溶剂化Li +的高氧溶解度和增量,导致形成更多结节产物,如通过扫描电子显微镜(SEM)所观察到的。

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    Fudan Univ Dept Chem Shanghai 200438 Peoples R China;

    Fudan Univ Shanghai Key Lab Mol Catalysis &

    Innovat Mat Inst New Energy Collaborat Innovat Ctr Chem Energy Mat Shanghai 200438 Peoples R China;

    Fudan Univ Dept Chem Shanghai 200438 Peoples R China;

    Fudan Univ Dept Chem Shanghai 200438 Peoples R China;

    Fudan Univ Shanghai Key Lab Mol Catalysis &

    Innovat Mat Inst New Energy Collaborat Innovat Ctr Chem Energy Mat Shanghai 200438 Peoples R China;

    Fudan Univ Shanghai Key Lab Mol Catalysis &

    Innovat Mat Inst New Energy Collaborat Innovat Ctr Chem Energy Mat Shanghai 200438 Peoples R China;

    Fudan Univ Dept Chem Shanghai 200438 Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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