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首页> 外文期刊>Journal of power sources >Highly conductive divalent fluorosulfonyl imide based electrolytes improving Li-ion battery performance: Additive potentiating electrolytes action
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Highly conductive divalent fluorosulfonyl imide based electrolytes improving Li-ion battery performance: Additive potentiating electrolytes action

机译:高导电二氟磺基酰亚胺基电解质改善锂离子电池性能:添加剂增强电解质作用

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摘要

Imide-based electrolyte salts are crucial in lithium-ion battery (LIB) research, due to their high oxidative capacity, thermal performance, and cycling stability. LIBs with imide electrolytes exhibit slow charge-discharge (CD) capacity and high efficiency, even though most of these electrolytes show low ionic conductivity (sigma). Herein, we have synthesized two highly conductive and pure divalent imide electrolytes, lithium sulfonylbis (fluorosulfonyl)imide (LiSFSI) and lithium (1,3-phenylenedisulfonyl)bis(fluoro sulfonyl)imide (LiPDSFSI), for LIBs application. Compared to LiPDSFSI electrolyte, the LiSFSI imide electrolyte with mixed solvent ethylene carbonate (EC) and dimethyl sulfoxide (HMSO) (75:25 v/v) exhibits better electrochemical stability, sigma, transference number (t(L+)), cycling stability, and high specific capacity of 142 mAhg(-1)with the full cell battery configuration of LiFePO4/electrolytes/graphite at 0.1 C. Additionally, lithium bis(fluoro-sulfonyl)imide (LiFSI) (20%), as additive, improve their performance substantially. The results demonstrate that the LiSFSI electrolyte with LiFSI additive shows maximum sigma (8.9 mS/cm at 30 degrees C), t(Li+) (0.64), and anodic stability (5.47 V), which concurrently delivers high efficiency and improves specific capacity to 156 mAhg(-1) with excellent capacity retention (99.93%) after 500 CD cycles with the full cell LiFePO4/electrolytes/graphite battery system.
机译:基于酰亚胺的电解质盐在锂离子电池(Lib)研究中是至关重要的,由于它们的高氧化能力,热性能和循环稳定性。具有酰亚胺电解质的LIB表现出缓慢的充放电(CD)容量和高效率,即使大多数电解质显示出低离子电导率(Sigma)。在此,我们已经合成了两个高导电和纯粹的二价酰亚胺电解质,磺基比斯(氟磺酰基)酰亚胺(LISFSI)和锂(1,3-苯二硫磺酰基)双(氟磺酰基)酰亚胺(LipdsFSI),用于Libs应用。与LipdsFSI电解质相比,具有混合溶剂碳酸亚乙酯(EC)和二甲基亚砜(HMSO)(75:25V / V)的LISFSI酰亚胺电解质表现出更好的电化学稳定性,Sigma,转移数(T(L +)),循环稳定性,和142mAhg(-1)的高特异性容量,随着0.1℃的LiFePO4 /电解质/石墨的全部电池电池配置。另外,锂双(氟 - 磺酰基)酰亚胺(LIFSI)(20%),作为添加剂,改善它们表现大概。结果表明,具有Lifsi添加剂的LISFSI电解质显示最大Sigma(30℃/ cm),T(Li +)(0.64)和阳极稳定性(5.47V),其同时提供高效率并提高特定能力。 156毫安(-1)含有优异的容量保留(99.93%)500镉循环,全细胞生命寿命/电解质/石墨电池系统。

著录项

  • 来源
    《Journal of power sources》 |2020年第15期|227980.1-227980.10|共10页
  • 作者单位

    Konkuk Univ Dept Energy & Mat Chungju 27478 South Korea;

    Konkuk Univ Dept Energy & Mat Chungju 27478 South Korea;

    Konkuk Univ Dept Energy & Mat Chungju 27478 South Korea;

    Konkuk Univ Dept Energy & Mat Chungju 27478 South Korea;

    Konkuk Univ Dept Energy & Mat Chungju 27478 South Korea;

    Konkuk Univ Dept Energy & Mat Chungju 27478 South Korea;

    Konkuk Univ Dept Liberal Arts 268 Chungwon Daero Chungju Si 27478 Chungcheongbuk South Korea;

    Konkuk Univ Dept Energy & Mat Chungju 27478 South Korea;

  • 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; Imide electrolyte; Additive; Anodic stability; Specific capacity;

    机译:锂离子电池;酰亚胺电解质;添加剂;阳极稳定性;具体容量;

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