Title of article :
Effects of PEO length and phenyl unit structure on ionic conductivities of the complexes of LiClO4 and alternating copolymers of PEO having various phenyl units in the backbone
Author/Authors :
Bae، Jin-Young نويسنده , , Park، Myoung Kook نويسنده , , Kim، Jinhwan نويسنده , , Ahn، Jung Ho نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Pages :
-642
From page :
643
To page :
0
Abstract :
A series of copolymers of predominantly poly(ethylene oxide) (PEO) with mono-phenyl (HQ), biphenyl (BP) units, or both of them (HQ/BP) in the backbone were synthesized. The solid polymer electrolytes (SPEs) were prepared from three different types of copolymers (HQ-PEG, BP-PEG, and HQ/BP-PEG) employing lithium perchlorate (LiClO4) as a lithium salt at a fixed salt concentration of [EO]/[Li+]=8. Their ionic conductivities were investigated to exploit the structure¯ionic conductivity relationships as a function of structural change in rigid phenyl units and chain length ratio between flexible PEO chain and rigid phenyl units. As more rigid phenyl units were incorporated in the backbone chain, the formation inter- and intra-molecular complex with LiClO4 became weaker and lower ionic conductivities were observed. And it was also found that higher ionic conductivity is obtained with increasing PEO chain length because inter- and intra-molecular dissociation power of PEO increases.
Keywords :
Mixed monolayer , Electrocatalytic sensing , 4-Aminothiophenol , NADH , In situ functionalization , Selective electrocatalysis
Journal title :
ELECTROCHEMISTRY COMMUNICATIONS
Serial Year :
2001
Journal title :
ELECTROCHEMISTRY COMMUNICATIONS
Record number :
55029
Link To Document :
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