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Effect of Excitation Wavelength on Optical Performances of Quantum-Dot-Converted Light-Emitting Diode

机译:激发波长对量子点转换发光二极管光学性能的影响

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摘要

Light-emitting diode (LED) combined with quantum dots (QDs) is an important candidate for next-generation high-quality semiconductor devices. However, the effect of the excitation wavelength on their optical performance has not been fully explored. In this study, green and red QDs are applied to LEDs of different excitation wavelengths from 365 to 455 nm. The blue light is recommended for exciting QDs from the perspective of energy utilization. However, QD LEDs excited at 365 nm have unique advantages in eliminating the original peaks from the LED chip. Moreover, the green or red light excited by ultraviolet light has an advantage in colorimetry. Even for the 455 nm LED with the highest QD concentration at 7.0 wt%, the color quality could not compete with the 365 nm LED with the lowest QD concentration at 0.2 wt%. A 117.5% (NTSC1953) color gamut could be obtained by the 365 nm-excited RGB system, which is 32.6% higher than by the 455 nm-excited solution, and this can help expand the color gamut of LED devices. Consequently, this study provides an understanding of the properties of QD-converted LEDs under different wavelength excitations, and offers a general guide to selecting a pumping source for QDs.
机译:与量子点(QDS)相结合的发光二极管(LED)是下一代高质量半导体器件的重要候选者。然而,激发波长对其光学性能的影响尚未得到充分探索。在本研究中,绿色和红色QDS应用于不同激发波长的LED,从365到455nm。从能量利用的角度来看,建议蓝光激发QDS。然而,在365nm处振奋的QD LED具有独特的优势,可以消除LED芯片的原始峰值。此外,紫外线激发的绿色或红光在比色度中具有优点。即使对于7.0wt%的QD浓度最高的455nm LED,颜色质量也不能与365nm LED竞争,其中QD浓度为0.2wt%。 117.5%(NTSC1953)色域可以通过365 nm激发的RGB系统获得,比455 NM激发溶液高32.6%,这有助于扩展LED器件的色域。因此,该研究提供了对不同波长激励下的QD转换LED的特性的理解,并提供了选择用于QD的泵浦源的一般指南。

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