钙钛矿白光发光二极管研究进展

Praveen Chenna, Suman Gandi, Sujith Pookatt, Saidi Reddy Parne
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引用次数: 2

摘要

近年来,钙钛矿材料在白光发光二极管(wled)方面的潜力引起了人们的极大兴趣。这是由于这些材料具有非凡的光学特性,这使它们成为wled应用的理想选择。本文综述了近年来基于钙钛矿材料的wled的研究进展及其在未来应用中的潜力。第一代基于钙钛矿材料的wled是在21世纪初开发的。这些led基于单层有机-无机钙钛矿材料,用于在可见光谱中产生单个发射峰。然后将这种单峰发射与荧光粉涂层结合以产生白光。从那时起,对wled的设计和结构进行了几项改进,从而提高了效率并增加了光输出。在过去的几年中,基于钙钛矿材料的wled的设计取得了一些进展。例如,多层钙钛矿的使用和量子点的添加使得产生更宽的发射光谱,从而改善了显色性和更高的发光效率。此外,纳米结构钙钛矿的使用使led的产生具有更高的效率和更好的热稳定性。总的来说,钙钛矿材料在wled中显示出巨大的应用潜力。这些材料相对容易制造,它们的光学特性可以定制,以产生广泛的颜色和发射光谱。此外,它们的低成本和高效率使它们在广泛的应用中具有吸引力。综上所述,钙钛矿材料是一种很有前途的WLED材料。这些led的设计和制造的最新进展使它们能够实现高效率和改善的显色性。因此,它们是汽车照明、家庭和企业照明等应用的一个有吸引力的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Perovskite white light emitting diodes: A review

Perovskite white light emitting diodes: A review

Recently, there has been a great deal of interest in the potential of perovskite materials for white light emitting diodes (WLEDs). This is due to the remarkable optical properties of these materials, which make them ideal for the application of WLEDs. In this review article, we discuss the recent progress made in the development of WLEDs based on perovskite materials and their potential for use in future applications. The first generation of WLEDs based on perovskite materials was developed in the early 2000s. These LEDs were based on a single layer of organic-inorganic perovskite material, which was used to generate a single emission peak in the visible spectrum. This single peak emission was then combined with a phosphor coating in order to generate white light. Since then, several improvements have been made to the design and structure of WLEDs, resulting in higher efficiency and increased light output. In the past few years, there have been several advances in the design of WLEDs based on perovskite materials. For example, the use of multi-layer perovskites and the addition of quantum dots have enabled the generation of broader emission spectra, resulting in improved color rendition and higher luminous efficacy. In addition, the use of nanostructured perovskites has enabled the generation of LEDs with higher efficiencies and improved thermal stability. Overall, perovskite materials have shown great potential for use in WLEDs. These materials are relatively easy to manufacture, and their optical properties can be tailored to generate a wide range of colors and emission spectra. Additionally, their low cost and high efficiency make them attractive for use in a wide range of applications. In conclusion, perovskite materials are a promising material for the development of WLED technology. The recent advances in the design and fabrication of these LEDs have enabled them to achieve high efficiencies and improved color rendition. As such, they are an attractive option for applications such as automotive lighting and lighting for homes and businesses.

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