Colloidal quantum dot light-emitting devices.

Nano reviews Pub Date : 2010-01-01 Epub Date: 2010-07-07 DOI:10.3402/nano.v1i0.5202
Vanessa Wood, Vladimir Bulović
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引用次数: 341

Abstract

Colloidal quantum dot light-emitting devices (QD-LEDs) have generated considerable interest for applications such as thin film displays with improved color saturation and white lighting with a high color rendering index (CRI). We review the key advantages of using quantum dots (QDs) in display and lighting applications, including their color purity, solution processability, and stability. After highlighting the main developments in QD-LED technology in the past 15 years, we describe the three mechanisms for exciting QDs - optical excitation, Förster energy transfer, and direct charge injection - that have been leveraged to create QD-LEDs. We outline the challenges facing QD-LED development, such as QD charging and QD luminescence quenching in QD thin films. We describe how optical downconversion schemes have enabled researchers to overcome these challenges and develop commercial lighting products that incorporate QDs to achieve desirable color temperature and a high CRI while maintaining efficiencies comparable to inorganic white LEDs (>65 lumens per Watt). We conclude by discussing some current directions in QD research that focus on achieving higher efficiency and air-stable QD-LEDs using electrical excitation of the luminescent QDs.

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Abstract Image

Abstract Image

胶体量子点发光装置。
胶体量子点发光器件(qd - led)在具有提高色彩饱和度的薄膜显示器和具有高显色指数(CRI)的白色照明等应用中引起了相当大的兴趣。我们回顾了在显示和照明应用中使用量子点(QDs)的主要优势,包括它们的颜色纯度、溶液可加工性和稳定性。在重点介绍了过去15年来QD-LED技术的主要发展之后,我们描述了激发qd的三种机制——光激发、Förster能量转移和直接电荷注入——这些机制被用来制造QD-LED。我们概述了QD- led发展面临的挑战,如QD充电和QD薄膜中的QD发光猝灭。我们描述了光学下转换方案如何使研究人员能够克服这些挑战,并开发出包含量子点的商业照明产品,以实现理想的色温和高显色指数,同时保持与无机白光led相当的效率(>65流明每瓦)。最后,我们讨论了当前量子点研究的一些方向,重点是利用发光量子点的电激发来实现更高的效率和空气稳定的量子点led。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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