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2,3,4,5,6-Pentafluorophenyl Methanesulfonate as a Versatile Electrolyte Additive Matches LiNi0.5Co0.2Mn0.3O2/Graphite Batteries Working in a Wide-Temperature Range.
Yang, Tianxiang; Fan, Weizhen; Wang, Chengyun; Lei, Qiufen; Ma, Zhen; Yu, Le; Zuo, Xiaoxi; Nan, Junmin.
Afiliação
  • Yang T; School of Chemistry and Environment , South China Normal University , Guangzhou 510006 , PR China.
  • Fan W; Guangzhou Tinci Materials Technology Co., Ltd. , Guangzhou 510760 , PR China.
  • Wang C; School of Chemistry and Environment , South China Normal University , Guangzhou 510006 , PR China.
  • Lei Q; Guangzhou Tinci Materials Technology Co., Ltd. , Guangzhou 510760 , PR China.
  • Ma Z; School of Chemistry and Environment , South China Normal University , Guangzhou 510006 , PR China.
  • Yu L; Guangzhou Tinci Materials Technology Co., Ltd. , Guangzhou 510760 , PR China.
  • Zuo X; School of Chemistry and Environment , South China Normal University , Guangzhou 510006 , PR China.
  • Nan J; School of Chemistry and Environment , South China Normal University , Guangzhou 510006 , PR China.
ACS Appl Mater Interfaces ; 10(37): 31735-31744, 2018 Sep 19.
Article em En | MEDLINE | ID: mdl-30130091
An electrolyte using 2,3,4,5,6-pentafluorophenyl methanesulfonate (PFPMS) as a versatile additive is investigated through calculating the molecular orbital energies of additives and solvents and designing the electrolyte composition, and the comparative performances of LiNi0.5Co0.2Mn0.3O2/graphite cells operating in a wide-temperature range are improved. It is revealed that PFPMS can form interfacial films on both the cathode and anode surfaces, resulting in a decrease of the cell impedance and the side reactions between the active materials and electrolyte. Compared to the cells without additive of 74.9% and those with vinylene carbonate (VC) of 76.7%, the cycling retention of the cell with 1.0 wt % PFPMS reaches 91.7% after 400 cycles at room temperature. In particular, for the high-temperature storage at 60 °C for 7 d, the cell containing 1.0 wt % PFPMS exhibits optimal capacity retention of 86.3% and capacity recovery of 90.6%; for the low-temperature discharge capacity retention at -20 °C, the cell with 1.0 wt % PFPMS maintains at 66.3% at 0.5 C, while for the cells without additive and containing 1.0 wt % VC, their retention values are 55.0 and 62.1%, respectively. The excellent cycling, wide-temperature practicability, and rate capability of the cells with PFPMS demonstrate that the electrolyte with PFPMS additive is promising for applications in LiNi0.5Co0.2Mn0.3O2/graphite batteries.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article