Stretchable and compliant electrodes on polydimethylsiloxane (PDMS) are efficiently fabricated by the implantation of neutral metallic clusters aerodynamically accelerated by a supersonic expansion. The production of these nanocomposite electrodes avoids any charging or carbonization of PDMS and the electrodes can withstand many deformation cycles, decreasing their resistance upon cyclical stretching. Micrometric patterns can be simply fabricated by stencil mask patterning.

Highly deformable nanostructured elastomeric electrodes with improving conductivity upon cyclical stretching / G. Corbelli, C. Ghisleri, M. Marelli, P. Milani, L. Ravagnan. - In: ADVANCED MATERIALS. - ISSN 0935-9648. - 23:39(2011), pp. 4504-4508.

Highly deformable nanostructured elastomeric electrodes with improving conductivity upon cyclical stretching

G. Corbelli
Primo
;
C. Ghisleri
Secondo
;
P. Milani
;
L. Ravagnan
Ultimo
2011

Abstract

Stretchable and compliant electrodes on polydimethylsiloxane (PDMS) are efficiently fabricated by the implantation of neutral metallic clusters aerodynamically accelerated by a supersonic expansion. The production of these nanocomposite electrodes avoids any charging or carbonization of PDMS and the electrodes can withstand many deformation cycles, decreasing their resistance upon cyclical stretching. Micrometric patterns can be simply fabricated by stencil mask patterning.
composite materials; flexible electronics; nanoparticles; patterning; polymeric materials
Settore FIS/03 - Fisica della Materia
2011
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/258074
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