TY - JOUR KW - Conductivity KW - Polymer electrolytes KW - Lithium battery KW - Comb branch polyethers KW - Salt diffusion coefficient KW - Trimethylene oxide AU - Gao Liu AU - Craig L Reeder AU - Xiao-Guang Sun AU - John B Kerr AB -
This paper reports on a new comb branch polymer based on trimethylene oxide (TMO) side chains as a polymer electrolyte for potential application in lithium metal rechargeable batteries. The trimethylene oxide (TMO) units are attached to the side chains of a polyepoxide ether to maximize the segmental motion. Lithium bis(trifluoromethylsulfonyl)imide (LiTFSI) salt was used to formulate the polymer electrolyte with the new TMO containing polymers. The new polymer electrolytes show improved salt diffusion coefficients (Ds) and conductivity at ambient and subambient temperature compare to the ethylene oxide (EO) counterpart, whereas performance at high temperature (85 °C) remains the same or is actually worse for salt diffusivity.
BT - Solid State Ionics DA - 11/2004 DO - 10.1016/j.ssi.2003.11.041 IS - 1-4 LA - eng LB - Batt N2 -This paper reports on a new comb branch polymer based on trimethylene oxide (TMO) side chains as a polymer electrolyte for potential application in lithium metal rechargeable batteries. The trimethylene oxide (TMO) units are attached to the side chains of a polyepoxide ether to maximize the segmental motion. Lithium bis(trifluoromethylsulfonyl)imide (LiTFSI) salt was used to formulate the polymer electrolyte with the new TMO containing polymers. The new polymer electrolytes show improved salt diffusion coefficients (Ds) and conductivity at ambient and subambient temperature compare to the ethylene oxide (EO) counterpart, whereas performance at high temperature (85 °C) remains the same or is actually worse for salt diffusivity.
OP - Fourteenth International Conference on Solid State Ionics PY - 2004 SP - 781 EP - 783 T2 - Solid State Ionics TI - Diffusion coefficients in trimethyleneoxide containing comb branch polymer electrolytes VL - 175 ER -