Room-Temperature, Solution-Processed, Robust, Transparent, and Conductive SiOx/AgNW Nanocomposite Coating

Pengfei Li, Xu Ma, Guifen Gong, Caihong Xu, Zongbo Zhang*

*Corresponding author for this work

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Abstract

AgNW networks show high promise as a conductive material due to excellent flexibility, low resistance, high transparency, and ease of large-scale preparation. However, the application of AgNW networks has been hindered by their inherent characteristics, such as easy oxidation degradation, chemical corrosion, and structural instability at high temperatures. In this study, a dense SiOx protective layer derived from perhydropolysilazane was introduced to fabricate a robust SiOx/AgNW nanocomposite coating through an all-solution process at room temperature. The achieved nanocomposite coating shows outstanding thermal stability up to 450 °C, resistance to ultraviolet radiation, and excellent mechanical performance by maintaining stability after 10,000 cycles of bending at a radius of 2.5 mm, 1000 cycles of peeling, and 1200 cycles of wearing. Meanwhile, the nanocomposite coating demonstrates exceptional chemical tolerance against HCl, Na2S, and organic solvents. A transparent heater based on the nanocomposite coating achieves a remarkable benchmark with a maximum temperature of 400 °C at 20 V. These features highlight the potential of the nanocomposite coating in flexible electronics, optoelectronics, touch screens, and high-performance heaters.

Original languageEnglish
Pages (from-to)43724-43733
Number of pages10
JournalACS Applied Materials and Interfaces
Volume16
Issue number33
DOIs
Publication statusPublished - 21 Aug 2024
Externally publishedYes

Keywords

  • high-temperature resistance
  • room temperature
  • SiO/AgNW nanocomposite coating
  • solution process
  • ultraviolet radiation tolerance

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Li, P., Ma, X., Gong, G., Xu, C., & Zhang, Z. (2024). Room-Temperature, Solution-Processed, Robust, Transparent, and Conductive SiOx/AgNW Nanocomposite Coating. ACS Applied Materials and Interfaces, 16(33), 43724-43733. https://doi.org/10.1021/acsami.4c07561