Ren Haitao, Qi Fan, Feng Xiangbo, Liu Jiaxiang, Zhao Yuzhen
Technological Institute of Materials & Energy Science (TIMES), Xijing University, Xi'an 710123, China.
State Key Laboratory of Medicinal Chemical Biology, College of Pharmacy, Nankai University, Tianjin 300071, China.
Molecules. 2024 Nov 12;29(22):5317. doi: 10.3390/molecules29225317.
The liquid-phase method is the most commonly utilized strategy for synthesizing fluorescent carbon quantum dots (CQDs). However, the liquid-phase synthesis of CQDs faces challenges such as low yield, complex purification, and the use of toxic solvents, which limit large-scale production and practical applications. In this study, fluorescent CQDs with a high product yield of 78% were synthesized using glucose as a carbon source through a green and facile one-step solid-phase approach, without solvents or post-treatment. A systematic study of the structure and fluorescence properties of the synthesized CQDs was conducted using various characterization techniques. The results indicated that the mean size of obtained CQDs was 4.1 nm, and that their surface had abundant oxygen-containing functional groups, resulting in favorable water solubility. The synthesized CQDs exhibited excitation-dependent fluorescence, with optimal excitation and emission wavelengths at 358 and 455 nm, respectively. Additionally, the CQDs solution showed bright blue fluorescence under 365 nm UV light, with a quantum yield of 6.21% and a fluorescence lifetime of 3.02 ns. This study offers valuable insights into the green and efficient synthesis of fluorescent CQDs powder.
液相法是合成荧光碳量子点(CQDs)最常用的策略。然而,CQDs的液相合成面临着诸如产率低、纯化复杂以及使用有毒溶剂等挑战,这些限制了大规模生产和实际应用。在本研究中,以葡萄糖为碳源,通过绿色简便的一步固相法合成了产率高达78%的荧光CQDs,无需使用溶剂或进行后处理。利用各种表征技术对合成的CQDs的结构和荧光性质进行了系统研究。结果表明,所获得的CQDs的平均尺寸为4.1nm,其表面具有丰富的含氧官能团,从而具有良好的水溶性。合成的CQDs表现出激发依赖的荧光,最佳激发波长和发射波长分别为358nm和455nm。此外,CQDs溶液在365nm紫外光下呈现亮蓝色荧光,量子产率为6.21%,荧光寿命为3.02ns。本研究为荧光CQDs粉末的绿色高效合成提供了有价值的见解。