Yuan Ting, Yuan Fanglong, Li Xiaohong, Li Yunchao, Fan Louzhen, Yang Shihe
College of Chemistry , Beijing Normal University , Beijing , 100875 , China . Email:
Guangdong Key Lab of Nano-Micro Material Research , School of Chemical Biology and Biotechnology , Shenzhen Graduate School , Peking University , Shenzhen 518055 , China . Email:
Chem Sci. 2019 Aug 28;10(42):9801-9806. doi: 10.1039/c9sc03492g. eCollection 2019 Nov 14.
Developing efficient single-component white light-emitting diodes (WLEDs) is extremely challenging due to the issue of Kasha's rule. Here we report the first demonstration of blue-yellow fluorescence-phosphorescence dual emission from our newly minted single-component white emissive carbon nitride quantum dots (W-CNQDs). The W-CNQDs deliver an overall photoluminescence quantum efficiency of 25%, which is the highest value among white-emitting materials reported to date, based on utilizing both singlet and triplet states. Experimental and theoretical investigations reveal that the carbonyl groups at the rim of the W-CNQDs play a key role in promoting intersystem crossing and inducing intermolecular electronic coupling, affording intensive yellow phosphorescence. Efficient white emission is achieved with a phosphorescence quantum efficiency of 6% under ambient conditions. A WLED is fabricated by integrating W-CNQD phosphors into a UV-LED chip, which shows favorable white light characteristics with CIE coordinates and a CRI of (0.35, 0.39) and 85, respectively, demonstrating good color chromatic stability. This work opens up new opportunities for exploring dual emission mechanisms and designs to facilitate the development of efficient single-component WLEDs.
由于卡莎规则的问题,开发高效的单组分白光发光二极管(WLED)极具挑战性。在此,我们首次展示了新制备的单组分白色发光氮化碳量子点(W-CNQDs)发出的蓝黄荧光-磷光双发射。基于同时利用单重态和三重态,W-CNQDs的整体光致发光量子效率达到25%,这是迄今为止报道的白色发光材料中的最高值。实验和理论研究表明,W-CNQDs边缘的羰基在促进系间窜越和诱导分子间电子耦合方面起着关键作用,从而产生强烈的黄色磷光。在环境条件下,磷光量子效率为6%时实现了高效的白色发射。通过将W-CNQD荧光粉集成到紫外发光二极管芯片中制备了WLED,其显示出良好的白光特性,CIE坐标和显色指数分别为(0.35, 0.39)和85,证明了良好的颜色色度稳定性。这项工作为探索双发射机制和设计开辟了新机会,以促进高效单组分WLED的发展。