Issue 19, 2004

Structure and inter-phase stability in solvent-free low-dimensional polymer electrolytes with high lithium conductivity

Abstract

Two Williamson procedures for the synthesis of the amphiphilic polymers poly[2,5,8,11,14-pentaoxapentadecamethylene(5-alkyloxy-1,3-phenylene)] I (abbrev. CmO5) are compared. Method X gives polyether-esters; method Y gives pure polyethers. In both, a dehydration reaction gives rise to CmO5–CmO1 copolymers. Two-phase systems of I with polyoxytetramethylene and polyoxytrimethylene copolymers (II) and LiBF4 have been prepared with and without an interfacial stabiliser copolymer III. Highest and most stable conductivities (>5 × 10−4 S cm−1 at ambient) with low temperature dependence were observed with III, but I from method Y showed a tendency to phase separate at ambient.

Graphical abstract: Structure and inter-phase stability in solvent-free low-dimensional polymer electrolytes with high lithium conductivity

Article information

Article type
Paper
Submitted
22 Jan 2004
Accepted
05 Mar 2004
First published
26 Jul 2004

Dalton Trans., 2004, 3053-3060

Structure and inter-phase stability in solvent-free low-dimensional polymer electrolytes with high lithium conductivity

Y. Zheng, J. Liu, Y. Liao, G. Ungar and P. V. Wright, Dalton Trans., 2004, 3053 DOI: 10.1039/B401042F

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