2011SID Symposium Digest of Technical PapersRequires access

58.3: Invited Paper : Flexible Transparent Photoluminescent Display

Cheol Jang, Sung‐Min Lee, Kukjoo Kim, Sung Il Ahn, Kyung Cheol Choi

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Abstract

Abstract In this study, we demonstrate a flexible transparent photoluminescent display using a plasma display platform. The plasma display is a viable nominee as a flexible transparent display as this platform has a very simple structure and does not require thin film transistors to drive the display device. Polyethylene terephthalate (PET) plastic film was used as a substrate. A test panel was fabricated with organic materials, with the exception of an electrode and a magnesium oxide (MgO) protecting layer, at a fabrication temperature lower than 60 °C. The test panel was highly transparent, and the transmittance measured from the fabricated test panel was approximately 40% over the entire visible spectral range.

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What this paper is about

Abstract In this study, we demonstrate a flexible transparent photoluminescent display using a plasma display platform. The plasma display is a viable nominee as a flexible transparent display as this platform has a very simple structure and does not require thin film transistors to drive the display device. Polyethylene terephthalate (PET) plastic film was used as a substrate. A test panel was fabricated with organic materials, with the exception of an electrode and a magnesium oxide (MgO) protecting layer, at a fabrication temperature lower than 60 °C. The test panel was highly transparent, and the transmittance measured from the fabricated test panel was approximately 40% over the entire visible spectral range.

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Available abstract

Abstract In this study, we demonstrate a flexible transparent photoluminescent display using a plasma display platform. The plasma display is a viable nominee as a flexible transparent display as this platform has a very simple structure and does not require thin film transistors to drive the display device. Polyethylene terephthalate (PET) plastic film was used as a substrate. A test panel was fabricated with organic materials, with the exception of an electrode and a magnesium oxide (MgO) protecting layer, at a fabrication temperature lower than 60 °C. The test panel was highly transparent, and the transmittance measured from the fabricated test panel was approximately 40% over the entire visible spectral range.

Key concepts: Plasma display, Materials science, Polyethylene terephthalate, Flexible display, Transmittance, Flat panel display, Optoelectronics, Fabrication

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