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Mini-LED and Micro-LED: Promising Candidates for the Next Generation Display Technology

Applied Sciences · 2018 · Vol. 8(9) · pp. 1557–1557
Tingzhu WuChin-Wei SherYue LinChun-Fu LeeShijie LiangYijun LüSung-Wen Huang ChenWeijie GuoHao‐Chung KuoZhong Chen

Abstract

Displays based on inorganic light-emitting diodes (LED) are considered as the most promising one among the display technologies for the next-generation. The chip for LED display bears similar features to those currently in use for general lighting, but it size is shrunk to below 200 microns. Thus, the advantages of high efficiency and long life span of conventional LED chips are inherited by miniaturized ones. As the size gets smaller, the resolution enhances, but at the expense of elevating the complexity of fabrication. In this review, we introduce two sorts of inorganic LED displays, namely relatively large and small varieties. The mini-LEDs with chip sizes ranging from 100 to 200 μm have already been commercialized for backlight sources in consumer electronics applications. The realized local diming can greatly improve the contrast ratio at relatively low energy consumptions. The micro-LEDs with chip size less than 100 μm, still remain in the laboratory. The full-color solution, one of the key technologies along with its three main components, red, green, and blue chips, as well color conversion, and optical lens synthesis, are introduced in detail. Moreover, this review provides an account for contemporary technologies as well as a clear view of inorganic and miniaturized LED displays for the display community.

Organic Light-Emitting Diodes ResearchQuantum Dots Synthesis And PropertiesGreen IT and SustainabilityBacklightLight-emitting diodeLED displayLED lampElectronicsComputer scienceMaterials scienceOptoelectronicsNanotechnologyLiquid-crystal display

Funding

  • National Natural Science Foundation of China
  • Natural Science Foundation of Fujian Province
  • Hong Kong University of Science and Technology
  • South University of Science and Technology of China
Citations
747
FWCI
33.39
field-weighted impact
References
51
Percentile
100%
vs. same field & year
Citations per year
References
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Quantum dot bioconjugates for imaging, labelling and sensing
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