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Synthesis of Nitrogen-Doped Lignin/DES Carbon Quantum Dots as a Fluorescent Probe for the Detection of Fe 3+ Ions

机译:氮掺杂木质素/ DES碳量子点作为荧光探针的荧光探针,用于检测Fe 3+离子

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Carbon quantum dots (CQDs) as a rising star of carbon nanomaterials have extensive applications due to their excellent characteristics. In this work, we introduce a simple and green method to prepare nitrogen-doped lignin carbon quantum dots (N-L-CQDs) by using alkali lignin carbon sources and deep eutectic solvent (DES) as solution and nitrogen source. The physiochemical characterization results suggested that N-L-CQDs with diameters ranging from 4 to 12 nm were successfully synthesized. The optical properties data indicated that the as-prepared N-L-CQDs with a quantum yield of 7.95% exhibited excellent optoelectronic properties, excitation-dependent and pH stability. After that, we have investigated the N-L-CQDs used as fluorescent probes to detect iron ions, which suggested that the as-prepared N-L-CQDs exhibited excellent sensitivity and selectivity for Fe 3+ with a detection limit of 0.44 μM. Besides, cytotoxicity of N-L-CQDs was also evaluated by MTT assay. These results demonstrated that the as-prepared N-L-CQDs with excellent properties have potential applications in environment and biomedicine.
机译:碳量子点(CQDS)作为碳纳米材料的上升星形,由于其优异的特性,具有广泛的应用。在这项工作中,我们通过使用碱木质素碳源和深共晶溶剂(DES)作为溶液和氮源来介绍一种简单而绿色的木质素碳量子点(N-L-CQDS)的简单和绿色方法。生理化学表征结果表明,直径为4至12nm的N-L-CQD成功合成。光学性质数据表明,具有量子产率为7.95%的质量的N-L-CQD表现出优异的光电性能,依赖性依赖性和pH稳定性。之后,我们研究了用作荧光探针以检测铁离子的N-L-CQD,这表明AS制备的N-L-CQDS具有优异的敏感性和Fe 3+的选择性,检测限为0.44μm。此外,N-L-CQDS的细胞毒性也通过MTT测定评估。这些结果表明,具有优异性质的AS制备的N-L-CQD具有环境和生物医学的潜在应用。

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