Wang Boyang, Yu Jingkun, Sui Laizhi, Zhu Shoujun, Tang Zhiyong, Yang Bai, Lu Siyu
Green Catalysis Center and College of Chemistry Zhengzhou University Zhengzhou 450000 China.
State Key Lab of Molecular Reaction Dynamics Dalian Institute of Chemical Physics Chinese Academy of Sciences Dalian 116023 China.
Adv Sci (Weinh). 2020 Nov 23;8(1):2001453. doi: 10.1002/advs.202001453. eCollection 2020 Jan.
As an emerging building unit, carbon dots (CDs) have been igniting the revolutionaries in the fields of optoelectronics, biomedicine, and bioimaging. However, the difficulty of synthesizing CDs in aqueous solution with full-spectrum emission severely hinders further investigation of their emission mechanism and their extensive applications in white light emitting diodes (LEDs). Here, the full-color-emission CDs with a unique structure consisting of -hybridized carbon cores with small domains of partially -hybridized carbon atoms are reported. First-principle calculations are initially used to predict that the transformation from to hybridization redshifts the emission of CDs. Guided by the theoretical predictions, a simple, convenient, and controllable route to hydrothermally prepare CDs in a single reaction system is developed. The prepared CDs have full-spectrum emission with an unprecedented two-photon emission across the whole visible color range. These full-color-emission CDs can be further nurtured by slight modifications of the reaction conditions (e.g., temperature, pH) to generate the emission color from blue to red. Finally a flexible LEDs with full-color emission by using epoxy CDs films is developed, indicating that the strategy affords an industry translational potential over traditional fluorophores.
作为一种新兴的构建单元,碳点(CDs)在光电子学、生物医学和生物成像领域引发了变革。然而,在水溶液中合成具有全光谱发射的碳点存在困难,这严重阻碍了对其发射机制的进一步研究以及它们在白光发光二极管(LEDs)中的广泛应用。在此,报道了一种具有独特结构的全色发射碳点,其由具有部分 - 杂化碳原子小区域的 - 杂化碳核组成。首先使用第一性原理计算预测从 到 杂化的转变会使碳点的发射发生红移。在理论预测的指导下,开发了一种在单一反应体系中通过水热法简便、可控地制备碳点的路线。所制备的碳点具有全光谱发射,在整个可见颜色范围内具有前所未有的双光子发射。通过对反应条件(例如温度、pH)进行轻微调整,这些全色发射碳点可以进一步调节以产生从蓝色到红色的发射颜色。最后,开发了一种使用环氧碳点薄膜的全色发射柔性LED,这表明该策略相对于传统荧光团具有工业转化潜力。