Red Emission B, N, S-co-Doped Carbon Dots for Colorimetric and Fluorescent Dual Mode Detection of Fe3+ Ions in Complex Biological Fluids and Living Cells.
Yinghua LiuWenxiu DuanWei SongJuanjuan LiuCuiling RenJiang WuDan LiuHongli ChenPublished in: ACS applied materials & interfaces (2017)
Colorimetric and fluorescent dual mode detection methods have gained much attention in recent years; however, it is still desirable to develop new colorimetric and fluorescent dual mode nanosensors with more simple preparation procedures, low cost, and excellent biocompatibility. Herein, a colorimetric and fluorescent nanosensor based on B, N, S-co-doped carbon dots (BNS-CDs) was synthesized by one-step hydrothermal treatment of 2,5-diaminobenzenesulfonic acid and 4-aminophenylboronic acid hydrochloride. Using this nanosensor, a highly sensitive assay of Fe3+ in the range of 0.3-546 μM with a detection limit of 90 nM was provided by quenching the red emission fluorescence. It is more attractive that Fe3+ can also be visualized by this nanosensor via evident color changes of the solution (from red to blue) under sunlight without the aid of an ultraviolet (UV) lamp. Furthermore, the designed nanosensor can be applied for efficient detection of intracellular Fe3+ with excellent biocompatibility and cellular imaging capability, and it holds great promise in biomedical applications.
Keyphrases
- living cells
- fluorescent probe
- quantum dots
- loop mediated isothermal amplification
- sensitive detection
- label free
- single molecule
- aqueous solution
- gold nanoparticles
- metal organic framework
- low cost
- real time pcr
- energy transfer
- visible light
- hydrogen peroxide
- high resolution
- working memory
- nitric oxide
- high throughput
- photodynamic therapy
- mass spectrometry
- deep learning
- reactive oxygen species
- machine learning
- tissue engineering
- municipal solid waste
- water soluble