4.5 Article

Highly Fluorescent Carbon Dots as a Potential Fluorescence Probe for Selective Sensing of Ferric Ions in Aqueous Solution

期刊

CHEMOSENSORS
卷 9, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/chemosensors9110301

关键词

Oxalis corniculata; hydrothermal; hydrophilic carbon dots; fluorescent sensor; fluorescence quenching

资金

  1. National Research Foundation of Korea (NRF) - Korean government MSIT [2021R1A2B5B02002436]
  2. National Research Foundation of Korea [2021R1A2B5B02002436] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

This paper presents a method for developing a fluorescent chemosensor for Fe3+ ions using hydrophilic carbon dots, synthesized from Oxalis corniculata through a simple, cost-effective, and environmentally friendly hydrothermal synthesis process. The resulting O-CDs exhibit good physical and chemical properties, high quantum yield, and stable fluorescence, making them suitable for sensitive and selective detection of Fe3+ ions in aqueous solutions. This nanosensor shows promise for biomedical applications due to its high biocompatibility and cellular imaging capabilities.
This paper's emphasis is on the development of a fluorescent chemosensor for Fe3+ ions in an aqueous solution, using hydrophilic carbon dots (O-CDs). A simple, cost-effective, and environmentally friendly one-step hydrothermal synthesis method was used to synthesize fluorescent hydrophilic O-CDs from Oxalis corniculata (Family; Oxalidaceae). The graphitic structure and size distribution of the O-CDs was verified by X-ray diffraction, Raman spectroscopy, and high-resolution transmission electron microscopy studies. The resulting O-CDs had a near-spherical shape and an adequate degree of graphitization at the core, with an average diameter of 4.5 nm. X-ray photoelectron and Fourier transform infrared spectroscopy methods revealed the presence of several hydrophilic groups (carbonyl, amine, carboxyl, and hydroxyl, along with nitrogen and oxygen-rich molecules) on the surface of O-CDs. The synthesized hydrophilic O-CDs with excitation wavelength-dependent emission fluorescence characteristics showed a high quantum yield of about 20%. Besides this, the hydrophilic O-CDs exhibited a bright and controllable fluorescence with prolonged stability and photo-stability. These fluorescent hydrophilic O-CDs were used as a nanoprobe for the fluorometric identification of Fe3+ ions in an aqueous solution, with high sensitivity and selectivity. By quenching the blue emission fluorescence of this nanosensor, a highly sensitive Fe3+ ion in the range of 10-50 mu M with a minimum detection limit of 0.73 mu M was achieved. In addition, the developed nanosensor can be used to sense intracellular Fe3+ ions with high biocompatibility and cellular imaging capacity, and it has a lot of potential in biomedical applications.

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