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微波辅助从墨西哥留兰香提取物中绿色合成荧光碳量子点用于 Fe 检测和生物成像应用。

Microwave-assisted green synthesis of fluorescent carbon quantum dots from Mexican Mint extract for Fe detection and bio-imaging applications.

机构信息

Department of Physics, Bharathiar University, Coimbatore, 641 046, Tamil Nadu, India.

Department of Zoology, Kongunadu Arts and Science College (Autonomous), G. N. Mills, Coimbatore, 641 029, India.

出版信息

Environ Res. 2021 Aug;199:111263. doi: 10.1016/j.envres.2021.111263. Epub 2021 May 1.

Abstract

Biomass-derived carbon quantum dots have drawn special interest owing to their admirable photostability, biocompatibility, fluorescence, high solubility, sensitivity and environmentally friendly properties. In the present work, the Carbon Quantum Dots (CQDs) was synthesized from the Plectranthus amboinicus (Mexican Mint) leaves via the microwave-assisted reflux method. The strong absorption peaks observed from UV-vis spectra at 291 and 330 nm corresponds to the π-π* and n-π* transitions, respectively, reveal the formation of CQDs. The synthesized CQDs showed bright blue fluorescence under UV irradiation with a fluorescence quantum yield of 17% and a maximum emission of 436 nm in the blue region at an excitation wavelength of 340 nm. The HRTEM analysis elucidates that the synthesized CQDs were crystalline and spherical in shape with a particle size of 2.43 ± 0.02 nm. The FT-IR spectroscopy confirms the presence of the different functional groups such as -OH, -CH, CO and C-O. The chemical composition of CQD was revealed through XPS analysis. The synthesized CQDs were used as a fluorescent probe to detect different metal ions, where high selectivity was obtained for Fe ions through quenching phenomenon. The emission intensity of CQD showed a good linear relationship with R = 0.9111 with the concentration of Fe ions in the range of 0-15 μM. The fluorescence emission of CQD was turned OFF upon the binding of Fe ions and turned - ON with the addition of ascorbic acid. With this fluorescent turn ON-OFF behaviour of CQD, the NOT and IMPLICATION logic gates were constructed and studied for different input conditions. The biocompatibility of CQD was tested via MTT assay using MCF7 breast cancer cell line, which revealed that CQD synthesized from the Mexican Mint leaves possess less cytotoxicity. Further, the prepared CQD was applied effectively as fluorescent probes in a cell imaging application.

摘要

生物量衍生的碳量子点由于其令人钦佩的光稳定性、生物相容性、荧光、高溶解度、灵敏度和环保特性而引起了特别的关注。在本工作中,通过微波辅助回流法从 Plectranthus amboinicus(墨西哥薄荷)叶片中合成了碳量子点(CQDs)。在紫外-可见光谱中观察到的强吸收峰在 291 和 330nm 处分别对应于π-π和 n-π跃迁,表明 CQDs 的形成。合成的 CQDs 在紫外光照射下显示出明亮的蓝色荧光,荧光量子产率为 17%,在激发波长为 340nm 时在蓝色区域的最大发射为 436nm。HRTEM 分析表明,合成的 CQDs 是结晶的和球形的,粒径为 2.43±0.02nm。FT-IR 光谱证实存在不同的官能团,如-OH、-CH、CO 和 C-O。通过 XPS 分析揭示了 CQD 的化学组成。合成的 CQDs 被用作荧光探针来检测不同的金属离子,其中通过猝灭现象对 Fe 离子获得了高选择性。CQD 的发射强度与 Fe 离子的浓度在 0-15μM 范围内呈良好的线性关系,R=0.9111。CQD 的荧光发射在与 Fe 离子结合时关闭,并在加入抗坏血酸时打开。通过 CQD 的这种荧光开-关行为,构建并研究了不同输入条件下的 NOT 和 IMPLICATION 逻辑门。通过 MCF7 乳腺癌细胞系的 MTT 测定法测试了 CQD 的生物相容性,结果表明从墨西哥薄荷叶片合成的 CQD 具有较低的细胞毒性。此外,制备的 CQD 有效地用作细胞成像应用中的荧光探针。

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