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A ratiometric fluorescent probe for pH detection based on Ag2S quantum dots-carbon dots nanohybrids.


ABSTRACT: In this study, a novel ratiometric fluorescent nanoprobe for pH monitoring has been developed by synthesizing red fluorescent Ag2S quantum dots (Ag2S QDs) and green fluorescent carbon dots (CDs) nanohybrids (Ag2S CDs) in one pot using CDs as templates. The nanoprobe exhibits dual-emission peaks at 500 and 670 nm under a single-excitation wavelength of 450 nm. The red fluorescence can be selectively quenched by increasing pH, while the green fluorescence is an internal reference. Therefore, the change of the relative fluorescence intensity (I500/I670) in the ratiometric Ag2S CDs probes can be used for pH sensing. The results revealed that I500/I670 of Ag2S CDs probes was linearly related to pH variation between pH 5.4 and 6.8. Meanwhile, the Ag2S CDs probes possessed a good reversibility along with pH changing between 5.0 and 7.0 without any interruption from common metal ions, proteins and other interferences.

SUBMITTER: Lei X 

PROVIDER: S-EPMC7428231 | biostudies-literature | 2020 Jul

REPOSITORIES: biostudies-literature

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A ratiometric fluorescent probe for pH detection based on Ag<sub>2</sub>S quantum dots-carbon dots nanohybrids.

Lei Xiaoxue X   Fu Yiying Y   Wu Yuan Y   Chen Lu L   Liang Jiangong J  

Royal Society open science 20200722 7


In this study, a novel ratiometric fluorescent nanoprobe for pH monitoring has been developed by synthesizing red fluorescent Ag<sub>2</sub>S quantum dots (Ag<sub>2</sub>S QDs) and green fluorescent carbon dots (CDs) nanohybrids (Ag<sub>2</sub>S CDs) in one pot using CDs as templates. The nanoprobe exhibits dual-emission peaks at 500 and 670 nm under a single-excitation wavelength of 450 nm. The red fluorescence can be selectively quenched by increasing pH, while the green fluorescence is an int  ...[more]

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