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Nitrogen and Phosphorus Co-Doped Carbon Nanodots as a Novel Fluorescent Probe for Highly Sensitive Detection of Fe3+ in Human Serum and Living Cells

机译:氮和磷共掺杂碳纳米点作为一种新型荧光探针,用于高灵敏度检测人血清和活细胞中的Fe3 +

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Chemical doping with heteroatoms can effectively modulate physicochemical and photochemical properties of carbon dots (CDs). However, the development of multi heteroatoms codoped carbon nanodots is still in its early stage. In this work, a facile hydrothermal Synthesis strategy was applied to synthesize multi heteroatoms (nitrogen and phosphorus) codoped carbon nanodots (N,P-CDs) using glucose as carbon source, and ammonia, phosphoric acid as dopant, respectively. Compared with CDs, the multi heteroatoms doped CDs resulted in dramatic improvement in the electronic characteristics and surface chemical activities. Therefore, the N,P-CDs prepared as described above exhibited a strong blue emission and a sensitive response to Fe3+. The N,P-CDs based fluorescent sensor was then applied to sensitively determine Fe3+ with a detection limit of 1.8 nM. Notably, the prepared N,P-CDs possessed negligible cytotoxicity, excellent biocompatibility, and high photostability. It was also applied for label-free detection of Fe3+ in complex biological samples and the fluorescence imaging of intracellular Fe3+, which indicated its potential applications in clinical diagnosis and other biologically related study.
机译:用杂原子进行化学掺杂可以有效地调节碳点(CD)的物理化学和光化学性质。然而,多杂原子共掺杂碳纳米点的开发仍处于早期阶段。在这项工作中,采用简便的水热合成策略,分别以葡萄糖为碳源,氨水,磷酸为掺杂剂,合成了多个杂原子(氮和磷)共掺杂的碳纳米点(N,P-CDs)。与CD相比,多杂原子掺杂的CD导致电子特性和表面化学活性得到了显着改善。因此,如上所述制备的N,P-CD表现出强的蓝色发射并且对Fe 3+敏感。然后将基于N,P-CDs的荧光传感器应用于灵敏度为1.8 nM的Fe3 +的测定。值得注意的是,所制备的N,P-CD具有可忽略的细胞毒性,优异的生物相容性和高的光稳定性。它也被用于复杂生物样品中Fe3 +的无标记检测和细胞内Fe3 +的荧光成像,表明其在临床诊断和其他生物学相关研究中的潜在应用。

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