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Flexible transparent conducting composite films using a monolithically embedded AgNW electrode with robust

Hyeon-Gyun Im1, Jungho Jin, Ji-Hoon Ko

  • 1Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Republic of Korea. bsbae@kaist.ac.kr.

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|November 29, 2013
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Summary

We developed a flexible hybrid conducting film with an embedded silver nanowire (AgNW) electrode on a reinforced composite substrate. This robust AgNW-GFRHybrimer film shows excellent stability for optoelectronic devices.

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Area of Science:

  • Materials Science
  • Nanotechnology
  • Optoelectronics

Background:

  • Flexible electronics require robust and stable transparent electrodes.
  • Existing materials often face challenges with durability and large-area fabrication.
  • Silver nanowires (AgNWs) offer conductivity but require protective substrates.

Purpose of the Study:

  • To develop and evaluate an all-in-one flexible hybrid conducting film.
  • To investigate the stability of the AgNW-GFRHybrimer film under various environmental stresses.
  • To demonstrate its potential as a reliable electrode platform for optoelectronic applications.

Main Methods:

  • Fabrication of a hybrid film with monolithically embedded AgNW transparent electrode.
  • Integration of a high-performance glass-fabric reinforced composite substrate (GFRHybrimer).
  • In-depth stability testing against heat, thermal oxidation, and wet chemicals.

Main Results:

  • The AgNW-GFRHybrimer film demonstrated robust performance stability.
  • The film exhibited resilience to heat, thermal oxidation, and chemical exposure.
  • Successful integration of AgNWs within a reinforced composite substrate was achieved.

Conclusions:

  • The AgNW-GFRHybrimer film is a promising, stable electrode platform for flexible optoelectronics.
  • Its large-area processability and smooth surface are advantageous.
  • The material offers a durable solution for next-generation thin-film devices.