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A universal facile synthesis of nitrogen and sulfur co-doped carbon dots from cellulose-based biowaste for fluorescent detection of Fe~(3+) ions and intracellular bioimaging

机译:来自纤维素的Biowashe的氮气和硫含量的氮气和硫的含碳碳点的通用性合成荧光检测Fe〜(3+)离子和细胞内生物分析

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摘要

Carbon dots (CDs), especially heteroatom doped CDs derived from natural resources, have attracted growing interest due to their multiple potential applications. In this work, nitrogen and sulfur co-doped CDs (N/S-CDs) with a high quantum yield of 13.3% were synthesized by a facile approach based on one-step combustion treatment of cellulose-based biowaste of willow catkin. Due to the existence of urea and sulfuric acid used in the combustion process, the generated yield of the obtained N/S-CDs was raised to be as high as 14.3%. N/S-CDs were characterized by high-resolution TEM, FT-IR spectroscopy, XPS spectroscopy and Raman spectroscopy. The formation mechanism of N/S-CDs was also explored. These N/S-CDs with an average diameter of 7.3 run demonstrated superior photo-stability, low cytotoxicity, pH stability and could be used for selective and sensitive detection of Fe3+ ions. Furthermore, based on their favorable feature of excellent biocompatibility and Fe3+ ions detection capability, the use of such N/S-CDs for intracellular Fe3+ ions detection application was also demonstrated.
机译:碳点(CDS),尤其是掺杂自自然资源的掺杂CD,由于其多个潜在应用而引起了日益增长的兴趣。在这项工作中,通过基于柳树纤维素的基于纤维素的BioWaste的一步燃烧处理,合成了高量子产率为13.3%的氮和硫的共掺杂Cds(N / S-CD)。由于燃烧过程中使用的尿素和硫酸的存在,所得N / S-CD的产生产率升高至高达14.3%。 N / S-CD的特征在于高分辨率TEM,FT-IR光谱,XPS光谱和拉曼光谱。还探讨了N / S-CD的形成机制。平均直径为7.3运行的这些N / S-CDS显示出优异的光稳定性,低细胞毒性,pH稳定性,并且可用于Fe3 +离子的选择性和敏感性检测。此外,基于其优异的生物相容性和Fe3 +离子检测能力的有利特征,还证明了对细胞内Fe3 +离子检测应用的这种N / S-CD的使用。

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