用于下一代彩色转换显示器的钙钛矿

IF 40.9 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Jihun Kim, Eui Dae Jung, Jeonghwan You, Jeongjae Lee, Bum Chan Park, Henry J. Snaith, Richard H. Friend, Changsoon Cho, Bo Ram Lee
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引用次数: 0

摘要

由于其强大的光学特性,金属卤化物钙钛矿可能成为未来显示技术的基础。然而,电致发光钙钛矿的商业化一直受到关键挑战的阻碍,包括有限的使用寿命和蓝色发射的不稳定性。在这里,我们强调钙钛矿在彩色转换显示器中的潜力。我们研究了钙钛矿材料作为颜色转换层的特殊优点:窄发射光谱,高吸收系数,高亮度操作,光子回收和易于制造。我们为开发符合RoHS(有害物质限制)和无滤色剂的基于钙钛矿的颜色转换显示器提供框架,并为商业化提供指导方针。我们还探索了使用钙钛矿颜色转换层来创建先进的增强现实和虚拟现实技术的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Perovskites for next-generation colour conversion displays

Perovskites for next-generation colour conversion displays

Metal halide perovskites could form the basis of future display technology due to their powerful optical properties. However, the commercialization of electroluminescent perovskites has been hindered by key challenges, including limited operational lifetime and instability in blue emission. Here we highlight the potential of perovskites in colour conversion displays. We examine the particular advantages of perovskite materials as colour conversion layers: narrow emission spectrum, high absorption coefficients, high-brightness operation, photon recycling and ease of manufacturing. We provide a framework for the development of RoHS (Restriction of Hazardous Substances)-compliant and colour-filter-free perovskite-based colour conversion displays and offer guidelines for commercialization. We also explore the potential of using perovskite colour conversion layers to create advanced augmented reality and virtual reality technologies.

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来源期刊
Nature Electronics
Nature Electronics Engineering-Electrical and Electronic Engineering
CiteScore
47.50
自引率
2.30%
发文量
159
期刊介绍: Nature Electronics is a comprehensive journal that publishes both fundamental and applied research in the field of electronics. It encompasses a wide range of topics, including the study of new phenomena and devices, the design and construction of electronic circuits, and the practical applications of electronics. In addition, the journal explores the commercial and industrial aspects of electronics research. The primary focus of Nature Electronics is on the development of technology and its potential impact on society. The journal incorporates the contributions of scientists, engineers, and industry professionals, offering a platform for their research findings. Moreover, Nature Electronics provides insightful commentary, thorough reviews, and analysis of the key issues that shape the field, as well as the technologies that are reshaping society. Like all journals within the prestigious Nature brand, Nature Electronics upholds the highest standards of quality. It maintains a dedicated team of professional editors and follows a fair and rigorous peer-review process. The journal also ensures impeccable copy-editing and production, enabling swift publication. Additionally, Nature Electronics prides itself on its editorial independence, ensuring unbiased and impartial reporting. In summary, Nature Electronics is a leading journal that publishes cutting-edge research in electronics. With its multidisciplinary approach and commitment to excellence, the journal serves as a valuable resource for scientists, engineers, and industry professionals seeking to stay at the forefront of advancements in the field.
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