Researchers at the Massachusetts Institute of Technology in the United States demonstrated a common structure for producing organic quantum dot light-emitting diode devices with emission spectra throughout the visible wavelength range. Such quantum dot LEDs (QD-LEDs) are expected to be used in the field of RGB flat-panel displays.
Thanks to the use of quantum dot ZnCdS and ZnCdSe materials, the team expanded the color gamut of QD-LEDs to include deep blue and deep red, while carrier-transporting materials are identical to green and orange devices. Hybrid organic QD-LEDs have the advantages of solid color, flexibility and low cost.
Left: A combined photo of a device developed by MIT, with an area of ​​0.6x1.9mm2, with blue and cyan running at a bias voltage of 6V.
Green and orange are 4V and red is 5V. Right: Electroluminescence spectrum of a quantum dot LED with a blue, green and orange voltage of 5V, a cyan color of 6V and a red color of 4V.
Image source: NanoLett
MIT's PolinaAnikeeva, Jonathan Halpert, and his colleagues used colloidal quantum dot synthesis (using CdSe, ZnS, ZnSe, ZnCdS, ZnCdSe alloys) for each visible spectrum through different pathways. Researchers can use the same organic substrate to grow each quantum dot category.
"Because this method allows each quantum dot to be processed independently, the same device structure can be achieved for all quantum dot colors. In the future, this contact printing method can be used to produce RGB flat panel displays, which easily realize red, green and blue quantum dot pixel stacking. Anikeeva said.
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