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Microencapsulating inorganic and organic flame retardants for the safety improvement of lithium-ion batteries

机译:微胶囊化无机和有机阻燃剂,用于锂离子电池的安全性改进

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摘要

Inorganic flame retardants (ATH and AlOOH) and an organic retardant (TPP) are embedded in cathodes and studied based on their fire retardancy for the safety of Li-ion battery. To prevent possible chemical reaction in the cathode, the flame retardants are microencapsulated (en-ATH, en-AlOOH, and en-TPP) using chemically stable poly(urea-formaldehyde) for comparison. The organic TPP is hydrophobic and its addition causes severe agglomeration of cathode materials, while the addition of en-TPP improves the dispersion. Both ATH and AlOOH own hydroxyl groups, and microencapsulation reduces their hydrogen bonding to improve their dispersion in the slurry. In the fire extinguishing test, a new method that simultaneously studies self-extinguishing time and temperature variation during the combustion of electrolytes is employed. Among all the retardants, ATH exhibits the best retardancy of 68%, with its retardancy remaining high at 62%, even when microencapsulated. Organic TPP shows a retardancy of 60% that decreased to 30% upon microencapsulation. The retardancies of AlOOH and en-AlOOH are intermediate between ATH and TPP and between en-ATH and en-TPP, respectively. The direct use of flame retardants results in the deterioration of the cell performance, which negative effect on the electrochemistry can be diminished efficiently by the use of microencapsulated retardants.
机译:无机阻燃剂(ATH和ALOOH)和有机阻燃剂(TPP)嵌入阴极中,并基于其对锂离子电池的安全性的阻燃性研究。为了防止在阴极中可能的化学反应,阻燃剂使用化学稳定的聚(脲醛)进行微胶囊化(en-Ath,En-AlOOH和EN-TPP)以进行比较。有机TPP是疏水性的,并且其添加导致阴极材料的严重凝聚,而加入en-TPP改善了分散体。 ATH和ALOOH既有羟基,微胶囊化可降低它们的氢键以改善它们在浆料中的分散体。在灭火试验中,采用了一种新的方法,即在电解质燃烧期间同时研究自熄时间和温度变化。在所有阻燃剂中,Ath表现出68%的最佳延缓性,即使在微胶囊化时,它的延缓性仍高62%。有机TPP显示出60%的延缓性,微胶囊化降低至30%。 ALOOH和EN-ALOOH的延迟性分别是ATH和TPP之间的中间体,分别在en-ATH和EN-TPP之间。直接用阻燃剂导致细胞性能的恶化,通过使用微囊化阻燃剂可以有效地减少对电化学的负面影响。

著录项

  • 来源
    《Solid state ionics》 |2018年第2018期|共8页
  • 作者

    Chi-An Chen; Chia-Chen Li;

  • 作者单位

    Institute of Materials Science and Engineering Department of Materials &

    Mineral Resources Engineering National Taipei University of Technology;

    Institute of Materials Science and Engineering Department of Materials &

    Mineral Resources Engineering National Taipei University of Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

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