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基于绿色植物衍生碳点的超窄带宽深红色电致发光

Ultra-Narrow-Bandwidth Deep-Red Electroluminescence Based on Green Plant-Derived Carbon Dots.

作者信息

Chen Renjing, Wang Zhibin, Pang Tao, Teng Qian, Li Chenhao, Jiang Naizhong, Zheng Song, Zhang Ruidan, Zheng Yuanhui, Chen Daqin, Yuan Fanglong

机构信息

College of Physics and Energy, Fujian Normal University, Fujian Provincial Key Laboratory of Quantum Manipulation and New Energy Materials, Fuzhou, 350117, China.

Huzhou Key Laboratory of Materials for Energy Conversion and Storage, College of Science, Huzhou University, Zhejiang, Huzhou, 313000, China.

出版信息

Adv Mater. 2023 Sep;35(36):e2302275. doi: 10.1002/adma.202302275. Epub 2023 Jul 20.

Abstract

Deep-red light-emitting diodes (DR-LEDs, >660 nm) with high color-purity and narrow-bandwidth emission are promising for full-color displays and solid-state lighting applications. Currently, the DR-LEDs are mainly based on conventional emitters such as organic materials and heavy-metal based quantum dots (QDs) and perovskites. However, the organic materials always suffer from the complicated synthesis, inferior color purity with full-width at half-maximum (FWHM) more than 40 nm, and the QDs and perovskites still suffer from serious problems related to toxicity. Herein, this work reports the synthesis of efficient and high color-purity deep-red carbon dots (CDs) with a record narrow FWHM of 21 nm and a high quantum yield of more than 50% from readily available green plants. Moreover, an exciplex host is further established using a polymer and small molecular blend, which has been shown to be an efficient strategy for producing high color-purity monochrome emission from deep-red CDs via Förster energy transfer (FET). The deep-red CD-LEDs display high color-purity with Commission Internationale de l'Eclairage (CIE) coordinates of (0.692, 0.307). To the best of the knowledge, this is the first report of high color-purity CD-LEDs in the deep-red region, opening the door for the application of CDs in the development of high-resolution light-emitting display technologies.

摘要

具有高色纯度和窄带宽发射的深红色发光二极管(DR-LED,>660 nm)在全彩显示和固态照明应用方面前景广阔。目前,DR-LED主要基于传统发光体,如有机材料、重金属基量子点(QD)和钙钛矿。然而,有机材料总是存在合成复杂、色纯度较差(半高宽超过40 nm)的问题,而量子点和钙钛矿仍然存在与毒性相关的严重问题。在此,本工作报道了从容易获得的绿色植物中合成出高效且高色纯度的深红色碳点(CD),其半高宽达到创纪录的21 nm,量子产率超过50%。此外,还使用聚合物和小分子共混物进一步构建了一种激基复合物主体,这已被证明是通过Förster能量转移(FET)从深红色CD产生高色纯度单色发射的有效策略。深红色CD-LED显示出高色纯度,国际照明委员会(CIE)坐标为(0.692, 0.307)。据我们所知,这是关于深红色区域高色纯度CD-LED的首次报道,为CD在高分辨率发光显示技术发展中的应用打开了大门。

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