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 sp (3)-hybridized carbon cores with small domains of partially sp (2)-hybridized carbon atoms are reported. First-principle calculations are initially used to predict that the transformation from sp (3) to sp (2) 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.
Rational Design of Multi-Color-Emissive Carbon Dots in a Single Reaction System by Hydrothermal.
利用水热法在单一反应体系中合理设计多色发光碳点
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作者:Wang Boyang, Yu Jingkun, Sui Laizhi, Zhu Shoujun, Tang Zhiyong, Yang Bai, Lu Siyu
| 期刊: | Advanced Science | 影响因子: | 14.100 |
| 时间: | 2020 | 起止号: | 2020 Nov 23; 8(1):2001453 |
| doi: | 10.1002/advs.202001453 | ||
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