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高亮度和可调节颜色的 FAPbBr 钙钛矿纳米晶体 2.0 可实现超高纯度绿光发射,从而达到 2020 年显示推荐标准。

High-Brightness and Color-Tunable FAPbBr Perovskite Nanocrystals 2.0 Enable Ultrapure Green Luminescence for Achieving Recommendation 2020 Displays.

机构信息

Department of Electronic Science and Technology, School of Electronic and Information Engineering , Xi'an Jiaotong University , Xi'an 710049 , Shaanxi , People's Republic of China.

Global Frontier Center for Multiscale Energy Systems , Seoul National University , Seoul 08826 , Korea.

出版信息

ACS Appl Mater Interfaces. 2020 Jan 15;12(2):2835-2841. doi: 10.1021/acsami.9b18140. Epub 2020 Jan 6.

Abstract

To best catch human eyes in next-generation displays, the updated recommendation 2020 (Rec. 2020) standard has called for ultrapure green emitters to be qualified with a narrow emission of 525-535 nm with a full width at half-maximum (fwhm) below 25 nm. However, it is still challenging to find an emitter which can simultaneously cover these two criteria. Instead of traditional II-VI group semiconductor quantum dots, perovskite nanocrystals (NCs) can render versatile emitting tunability to allow them access to the Rec. 2020 standard. Herein, to realize the critical window of Rec. 2020, we have proposed a scalable, room temperature synthesis route of formamidinium lead bromide (FAPbBr) NCs using a sole ligand of sulfobetaine-18 (SBE-18). The as-synthesized FAPbBr NCs exhibit an ideal emission at 534 nm with an ultranarrow fwhm of 20.5 nm and a high photoluminescence quantum yield of 90.6%, overwhelming the FAPbBr nanoplates capped with oleic acid/oleylamine (OA/OAM). Introducing these high quality NCs into backlight displays, an ultrapure green backlight which covers ≈85.7% of the Rec. 2020 standard in the CIE 1931 color space is achieved, signifying the "greenest" backlight till now. Thus, we can foresee perovskite NCs as the most potential candidates for next-generation displays.

摘要

为了在下一代显示器中最好地吸引人类的目光,更新的 2020 年推荐标准(Rec. 2020)呼吁将超纯绿色发射器的资格限定为 525-535nm 的窄发射,半最大值全宽(fwhm)低于 25nm。然而,找到同时满足这两个标准的发射器仍然具有挑战性。与传统的 II-VI 族半导体量子点不同,钙钛矿纳米晶体(NCs)可以提供多种发射调谐,使它们能够满足 Rec. 2020 标准。在此,为了实现 Rec. 2020 的关键窗口,我们提出了一种使用单一配体磺基甜菜碱-18(SBE-18)在室温下合成卤化铅甲脒(FAPbBr)NCs 的可扩展方法。合成的 FAPbBr NCs 在 534nm 处表现出理想的发射,半最大值全宽(fwhm)为 20.5nm,光致发光量子产率为 90.6%,超过了用油酸/油胺(OA/OAM)封端的 FAPbBr 纳米板。将这些高质量的 NCs 引入背光源,在 CIE 1931 颜色空间中实现了覆盖 Rec. 2020 标准约 85.7%的超纯绿色背光源,这是迄今为止“最绿色”的背光源。因此,我们可以预见钙钛矿 NCs 将成为下一代显示器最有潜力的候选材料。

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