Electrochimica Acta, Vol.50, No.19, 3832-3837, 2005
All solid-state polymer electrolytes prepared from a hyper-branched graft polymer using atom transfer radical polymerization
We propose an all solid-state (liquid free) polymer electrolyte (SPE) prepared from a hyper-branched graft copolymer. The graft copolymer consisting of a poly(methyl methacrylate) main chain and poly(ethylene glycol) methyl ether methacrylate side chains was synthesized by atom transfer radical polymerization changing the average chain distance between side chains, side chain length and branched chain length of the proposed structure of the graft copolymer. The ionic conductivity of the SPEs increases with increasing the side chain length, branched chain length and/or average distance between the side chains. The ionic conductivity of the SPE prepared from POEM9 whose POEM content = 51 wt% shows 2 x 10(-5) S/cm, at 30 degrees C. The tensile strength of the SPEs decreases with increases the side chain length, branched chain length and/or average distance between the side chains. These results indicate that a SPE prepared from the hyper-branched graft copolymer has potential to be applied to an all-solid polymer electrolyte. (c) 2005 Elsevier Ltd. All rights reserved.
Keywords:solid state;polymer electrolyte;graft polymer;atom transfer radical polymerization;ionic conductivity