Wrinkled TiNAgNW Nanocomposites for High-Performance Flexible Electrodes on TEMPO-Oxidized Nanocellulose.
Loïk GenceFranck QueroMiguel EscalonaRobert WheatleyBirger SeifertDonovan E Diaz-DroguettMaría José RetamalSascha WallentowitzUlrich Georg VolkmannHeman BhuyanPublished in: Nanomaterials (Basel, Switzerland) (2024)
In this study, we present a novel method for fabricating semi-transparent electrodes by combining silver nanowires (AgNW) with titanium nitride (TiN) layers, resulting in conductive nanocomposite coatings with exceptional electromechanical properties. These nanocomposites were deposited on cellulose nanopaper (CNP) using a plasma-enhanced pulsed laser deposition (PE-PLD) technique at low temperatures (below 200 °C). Repetitive bending tests demonstrate that incorporating AgNW into TiN coatings significantly enhances the microstructure, increasing the electrode's electromechanical robustness by up to four orders of magnitude compared to commercial PET/ITO substrates. Furthermore, the optical and electrical conductivities can be optimized by adjusting the AgNW network density and TiN synthesis temperature. Our results also indicate that the nanocomposite electrodes exhibit improved stability in air and superior adhesion compared to bare AgNW coatings.
Keyphrases
- reduced graphene oxide
- gold nanoparticles
- oxide nanoparticles
- perovskite solar cells
- high speed
- carbon nanotubes
- computed tomography
- high resolution
- white matter
- silver nanoparticles
- pet ct
- ionic liquid
- solid state
- pet imaging
- staphylococcus aureus
- mass spectrometry
- room temperature
- cell migration
- light emitting
- electron transfer