Issue 63, 2015

Highly flexible and conductive composite films of silk fibroin and silver nanowires for optoelectronic devices

Abstract

Silver nanowire-coated silk fibroin (SF) was used to create composite films with high flexibility, good electrical conductivity and excellent mechanical properties. SF was coated with a layer of entangled silver nanowires (AgNWs) that were sputtered with a platinum layer. The SF–AgNWs composite films exhibited excellent performance with a conductivity of ∼15.0 Ω sq−1 and transmittance of ∼80% in the visible light range. The films also retained conductivity even after being bent hundreds of times; this recovery was attributed to the structure of the embedded AgNWs in SF, and metallic contacts among the AgNWs induced by the ion sputtering. The SF–AgNWs composite films also showed promise in practical applications, including as a conduit to light emitting diodes (LEDs). These novel composite films could be used to fabricate wearable electronics and implantable devices.

Graphical abstract: Highly flexible and conductive composite films of silk fibroin and silver nanowires for optoelectronic devices

Article information

Article type
Paper
Submitted
26 Feb 2015
Accepted
03 Jun 2015
First published
03 Jun 2015

RSC Adv., 2015,5, 50878-50882

Author version available

Highly flexible and conductive composite films of silk fibroin and silver nanowires for optoelectronic devices

N. Qi, B. Zhao, S. Wang, S. S. Al-Deyab and K. Zhang, RSC Adv., 2015, 5, 50878 DOI: 10.1039/C5RA03501E

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