Organic light emitting diode and liquid crystal display: structure, mechanism, preparation, and comparison
DOI:
https://doi.org/10.54097/hset.v21i.3132Keywords:
OLED and LCD, The display of electronic, Characteristics of luminescence.Abstract
As technology is constantly evolving, and with the rapid development of mobile phones in recent years, OLED and LCD are widely used in the display of electronic devices such as mobile phone displays and TV displays. Both technologies have the characteristics of luminescence, but there are also great differences on their structure and mechanism behind. This review will introduce OLED and LCD in details, including the structure, mechanism, preparation, and comparison of those two technologies. This paper can give some ideas to consumers who are confused by OLED and LCD displays and help them better choose on mobile phone screens or TV screen that are suitable for them after understanding the differences.
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References
Hong, G., Gan, X., Leonhardt, C., Zhang, Z., Seibert, J., Busch, J. M., & Bräse, S. (2021) A Brief History of OLEDs-Emitter Development and Industry Milestones. Advanced materials, 33, e2005630.
Wei, H. (2018) In-depth analysis of the development history of OLED. https://www.elecfans.com/d/806042.html
Castellano, J. A. (2005) The History of LCD Development. In: Flat Panel Displays International.
ALFA Chemistry. (2022) Organic Light-Emitting Diode (OLED) Materials. https://materials.alfachemic.com/products/organic-light-emitting-diode-oled-materials-478.html
4.1 LCD Basics. https://spie.org/samples/TT100.pdf
Antoniadis, H. Overview of OLED Display Technology. https://www.ewh.ieee.org/soc/cpmt/presentations/cpmt0401a.pdf
Samsung Display Newsroom. (2021) [Learn Display] 25. Organic Layers (HIL, HTL, EML, ETL, EIL). http://global.samsungdisplay.com/28687/
Chris, W. (2021) LCDs (liquid crystal displays). http://global.samsungdisplay.com/28687/
51wendang. (2022) OLED material and structure. https://www.51wendang.com/doc/69726d9488d756190e00c7db/2
Iqbal, T., Bashir, A., Shakil, M., Afsheen, S., Tehseen, A., Ijaz, M., & Riaz, K. N. (2019) Investigation of plasmonic bandgap for 1D exposed and buried metallic gratings. Plasmonics, 14:493-499.
TUAT. Vacuum Deposition. http://web.tuat.ac.jp/~usuilab/English/depo.html
Roshni, Y. (2018) Light Emitting Diode (LED). https://electronicsdesk.com/light-emitting-diode.html
Orient Display. LED, EL and CCFL Backlights. https://www.orientdisplay.com/knowledge-base/parts-materials/lcd-backlights/led-el-and-ccfl-backlights/
Tian, J., & Zhuang, W. (2021) Thermal stability of nitride phosphors for light-emitting diodes. Inorganic Chemistry Frontiers, 8: 4933-4954.
Makerfabs. (2017) Display: OLED vs LCD. https://www.makerfabs.com/display-oled-vs-lcd.html
Chen, L. Y., Chen, S. H., Dai, S. J., Kuo, C. T., & Wang, H. C. (2014) Spectral design and evaluation of OLEDs as light sources. Organic Electronics, 15: 2194-2209.
Geoffrey, M. (2021) LCD vs. OLED: TV display technologies compared. https://www.cnet.com/tech/home-entertainment/led-lcd-vs-oled/
IHS Markit. (2017) Costs of 55-inch OLED TV Display Production Catch Up to LCD TV Panels, IHS Markit Says. https://news.ihsmarkit.com/prviewer/release_only/slug/technology-costs-55-inch-oled-tv-display-production-catch-lcd-tv-panels-ihs-markit-say
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