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QLEDs for displays and solid-state lighting

机译:用于显示器和固态照明的QLED

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The mainstream commercialization of colloidal quantum dots (QDs) for light-emitting applications has begun: Sony televisions emitting QD-enhanced colors are now on sale. The bright and uniquely size-tunable colors of solution-processable semiconducting QDs highlight the potential of electroluminescent QD light-emitting devices (QLEDs) for use in energy-efficient, high-color-quality thin-film display and solid-state lighting applications. Indeed, this year's report of record-efficiency electrically driven QLEDs rivaling the most efficient molecular organic LEDs, together with the emergence of full-color QLED displays, foreshadow QD technologies that will transcend the optically excited QD-enhanced products already available. In this article, we discuss the key advantages of using QDs as luminophores in LEDs and outline the 19-year evolution of four types of QLEDs that have seen efficiencies rise from less than 0.01 % to 18%. With an emphasis on the latest advances, we identify the key scientific and technological challenges facing the commercialization of QLEDs. A quantitative analysis, based on published small-scale synthetic procedures, allows us to estimate the material costs of QDs typical in light-emitting applications when produced in large quantities and to assess their commercial viability.
机译:用于发光应用的胶体量子点(QD)的主流商业化已经开始:发射QD增强颜色的索尼电视现已开始销售。可溶液处理的半导体QD的明亮且尺寸可调的独特颜色突出了电致发光QD发光器件(QLED)的潜力,该器件可用于高能效,高色彩质量的薄膜显示器和固态照明应用。的确,今年的报告提出了创纪录的电驱动QLED与最高效的分子有机LED竞争的报道,以及全色QLED显示器的出现,预示了QD技术将超越现有的光激发QD增强产品。在本文中,我们讨论了将QD用作LED中的发光体的主要优点,并概述了四种类型的QLED在19年的发展过程中,其效率从不到0.01%上升到18%。着眼于最新进展,我们确定了QLED商业化所面临的关键科学和技术挑战。基于已发布的小型合成程序的定量分析,可以让我们估算出大批量生产时发光应用中常见的量子点的材料成本,并评估其商业可行性。

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