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Sulfuric-acid-mediated synthesis strategy for multi-colour aggregation-induced emission fluorescent carbon dots: Application in anti-counterfeiting, information encryption, and rapid cytoplasmic imaging

硫酸 荧光 光化学 发光 聚集诱导发射 化学 碳纤维 量子产额 产量(工程) 分析化学(期刊) 材料科学 波长 无机化学 橙色(颜色) 纳米技术 量子点 发射光谱 光致发光 化学工程 生物成像
作者
Lijuan Yang,Shaochi Liu,Tian Quan,Yongqing Tao,Meng Tian,Luchun Wang,Junji Wang,Dandan Wang,Die Gao
出处
期刊:Journal of Colloid and Interface Science [Elsevier BV]
卷期号:612: 650-663 被引量:64
标识
DOI:10.1016/j.jcis.2022.01.004
摘要

Four colors of AIE-CDs were successfully prepared by using crystal violet as precursor, different concentrations of sulfuric acid solution as the solvent under different temperature and reaction time. These AIE-CDs have unique advantages that they were successfully applied in the fields of multi-color anti-counterfeiting, information encryption and rapid cytoplasmic imaging. Aggregation-induced emission fluorescent carbon dots (AIE-CDs) have applications in the fields of multi-colour anti-counterfeiting, information encryption, and imaging. In this study, four AIE-CDs (B-AIE-CDs, G-AIE-CDs, Y-AIE-CDs, and O-AIE-CDs) with blue, green, yellow, and orange fluorescence at high concentrations were fabricated using crystal violet as a precursor, solutions with different sulfuric acid concentrations as solvents under different temperatures and reaction times for the first time. The structural properties and fluorescence behaviour of the AIE-CDs were investigated. The results revealed that the sulfuric acid concentration had a significant effect on the fluorescence colour of the AIE-CDs because sulfuric acid can affect the degree of carbonisation, the type and content of nitrogen. Moreover, the reaction temperature and time affected the surface-defect state and the degree of carbonisation of the AIE-CDs, which affected the emission wavelength and quantum yield (QY) of the AIE-CDs. Furthermore, to exploit the unique characteristics (polychromatic aggregation fluorescence and acid-sensitive properties) of the obtained-AIE-CDs, anti-counterfeiting and information encryption methodologies (i.e., acid-stimuli-response producing multi-colour fluorescence) were preliminarily developed. Finally, B-AIE-CDs with a high QY of 43.5% were successfully used for rapid cytoplasmic imaging, demonstrating their applicability in biological fields.
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