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

      Nanoscale
      Electric Conductivity, Electrodes, Electronics, Graphite, chemistry, Nanowires, Oxidation-Reduction, Silver, Temperature

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          Abstract

          We report on the performance of an all-in-one flexible hybrid conducting film employing a monolithically embedded AgNW transparent electrode and a high-performance glass-fabric reinforced composite substrate (AgNW-GFRHybrimer film). Specifically, we perform in-depth investigations on the stability of the AgNW-GFRHybrimer film against heat, thermal oxidation, and wet chemicals to demonstrate the potential of the hybrid conducting film as a robust electrode platform for thin-film optoelectronic devices. With the ease of large-area processability, smooth surface topography, and robust performance stability, the AgNW-GFRHybrimer film can be a promising platform for high-performance optoelectronic devices.

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          Author and article information

          Journal
          24284890
          10.1039/c3nr05348b

          Chemistry
          Electric Conductivity,Electrodes,Electronics,Graphite,chemistry,Nanowires,Oxidation-Reduction,Silver,Temperature

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