利用蓝光吸收封装结构增强绿色量子点发光二极管的色纯度

Cunjiang Song, Xuewei Du, Jie Xuan, Zongtao Li, Jiasheng Li, Xinrui Ding
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摘要

量子点以其较窄的发射半峰宽度和较高的量子产率在全彩发光二极管等显示器件中具有广阔的应用前景。然而,为了实现高颜色纯度,需要超高浓度的量子点来消除泵浦光(典型的短波蓝光),导致量子点的光功率显著降低。本文介绍了绿色量子点发光二极管(gqd - led)中的蓝光吸收剂(BLA)来调节颜色坐标。结果表明,增加量子点浓度可以消除蓝光,提高颜色纯度,但同时由于重吸收损失,量子点的光功率降低。BLA层对短波长光(小于460 nm)有很高的吸收,使蓝光的光功率大大降低74%,导致色坐标从(0.17,0.22)到(0.18,0.47)的大位移。此外,BLA层对长波长的光具有较高的透过率,从而保证了BLA器件具有较高的绿色光功率。因此,该方法在未来的全彩色显示中具有很大的应用潜力。
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Color Purity Enhancement of Green Quantum Dot Light-Emitting Diodes Using the Blue Light Absorber Packaging Structure
Quantum dots (QDs) have broad application prospects in display such as full color light-emitting diode (LED) devices due to their narrow emission half-peak width and high quantum yield. However, an ultra-high concentration of QD is required to eliminate the pumping light (typical blue light with short wavelength) for achieving high color purity, leading to significant reduction in the optical power of QDs. In this paper, we have introduced the blue light absorber (BLA) in green quantum dot-light emitting diodes (GQD-LEDs) to adjust the color coordinates. Results indicate that the increase of the QD concentration can eliminate the blue light and increase the color purity, while it simultaneously decreases of the optical power of QDs owing the reabsorption loss. The BLA layer has high absorption for short-wavelength light (less than 460 nm), which greatly reduces the optical power of blue light by 74% and leads to a large shift in the color coordinates from (0.17, 0.22) to (0.18, 0.47). Moreover, the BLA layer has a high transmittance for the long-wavelength light, thereby ensuring a high green optical power for BLA devices. Consequently, the proposed method has great potential for the future application of QD-LED in full color display.
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