AI Article Synopsis

  • Hermetic sealing technology is crucial for protecting air-sensitive materials and advancing foldable and stretchable electronics.
  • An ultra gas-proof polymer hybrid layer was created by utilizing gas-phase atomic layer infiltration to fill the polymer's free space with aluminum oxide (AlO).
  • This new polymer-inorganic hybrid exhibits an extremely low gas transmission rate and exceptional flexibility, making it ideal for hermetic sealing in innovative electronic devices.

Article Abstract

Hermetic sealing is an important technology for isolating and protecting air-sensitive materials and is key in the development of foldable and stretchable electronic devices. Here we report an ultra gas-proof polymer hybrid thin layer prepared by filling the free volume of the polymer with AlO using gas-phase atomic layer infiltration. The high-density polymer-inorganic hybrid shows extremely low gas transmission rate, below the detection limit of the Ca corrosion test (water vapor transmission rate <10 g m day). Furthermore, because of the remarkable nanometer-scale thinness of the complete polymer-inorganic hybrid, it is highly flexible, which makes it useful for hermetic sealing of stretchable and foldable devices.

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http://dx.doi.org/10.1021/acs.nanolett.8b01855DOI Listing

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Ultra Gas-Proof Polymer Hybrid Thin Layer.

Nano Lett

September 2018

Department of Chemistry , Hanyang University, Seoul 04763 , Republic of Korea.

Article Synopsis
  • Hermetic sealing technology is crucial for protecting air-sensitive materials and advancing foldable and stretchable electronics.
  • An ultra gas-proof polymer hybrid layer was created by utilizing gas-phase atomic layer infiltration to fill the polymer's free space with aluminum oxide (AlO).
  • This new polymer-inorganic hybrid exhibits an extremely low gas transmission rate and exceptional flexibility, making it ideal for hermetic sealing in innovative electronic devices.
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