4.8 Article

Enhanced performance of P(VDF-HFP)-based composite polymer electrolytes doped with organic-inorganic hybrid particles PMMA-ZrO2 for lithium ion batteries

Journal

JOURNAL OF POWER SOURCES
Volume 382, Issue -, Pages 128-134

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jpowsour.2018.02.012

Keywords

Organic-inorganic hybrid particle; P(VDF-HFP); Composite polymer electrolyte; Lithium ion battery

Funding

  1. National Natural Science Foundation of China [51404038, 51472034, 51503020]
  2. Educational Commission of Hubei Province Foundation of China [B2016040]
  3. Yangtze Youth Talents Fund [2016cqr05]

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To improve the ionic conductivity as well as enhance the mechanical strength of the gel polymer electrolyte, poly (vinylidene fluoride-hexafluoroprolene) (P(VDF-HFP))-based composite polymer electrolyte (CPE) membranes doped with the organic-inorganic hybrid particles poly(methyl methacrylate) -ZrO2 (PMMA-ZrO2) are prepared by phase inversion method, in which PMMA is successfully grafted onto the surface of the homemade nano-ZrO2 particles via in situ polymerization confirmed by FT-IR. XRD and DSC patterns show adding PMMA-ZrO2 particles into P(VDF-HFP) can significantly decrease the crystallinity of the CPE membrane. The CPE membrane doped with 5 wt % PMMA-ZrO2 particles can not only present a homogeneous surface with abundant interconnected micro-pores, but maintain its initial shape after thermal exposure at 160 degrees C for 1 h, in which the ionic conductivity and lithium ion transference number at room temperature can reach to 3.59 x 10(-3)S cm(-1) and 0.41, respectively. The fitting results of the EIS plots indicate the doped PMMA-ZrO2 particles can significantly lower the interface resistance and promote lithium ions diffusion rate. The Li/CPE-sPZ/LiCoO2 and Li/CPE-sPZ/Graphite coin cells can deliver excellent rate and cycling performance. Those results suggest the P(VDF-HFP)-based CPE doped with 5 wt % PMMA-ZrO2 particles can become an exciting potential candidate as polymer electrolyte for the lithium ion battery.

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