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Merck
  • Imprintable, bendable, and shape-conformable polymer electrolytes for versatile-shaped lithium-ion batteries.

Imprintable, bendable, and shape-conformable polymer electrolytes for versatile-shaped lithium-ion batteries.

Advanced materials (Deerfield Beach, Fla.) (2013-01-03)
Eun-Hye Kil, Keun-Ho Choi, Hyo-Jeong Ha, Sheng Xu, John A Rogers, Mi Ri Kim, Young-Gi Lee, Kwang Man Kim, Kuk Young Cho, Sang-Young Lee
ABSTRACT

A class of imprintable, bendable, and shape-conformable polymer electrolyte with excellent electrochemical performance in a lithium battery system is reported. The material consists of a UV-cured polymer matrix, high-boiling point liquid electrolyte, and Al2 O3 nanoparticles, formulated for use in lithium-ion batteries with 3D-structured electrodes or flexible characteristics. The unique structural design and well-tuned rheological characteristics of the UV-curable electrolyte mixture, in combination with direct UV-assisted nanoimprint lithography, allow the successful fabrication of polymer electrolytes in geometries not accessible with conventional materials.

MATERIALS
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Sigma-Aldrich
Trimethylolpropane triacrylate, contains monomethyl ether hydroquinone as inhibitor, technical grade