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Synthesis of Novel Fluorescent Carbon Quantum Dots From Rosa roxburghii for Rapid and Highly Selective Detection of o-nitrophenol and Cellular Imaging.


ABSTRACT: A novel carbon quantum dots (CQDs) were successfully synthesized by one-step hydrothermal reaction using Rosa roxburghii as a biomass-based precursor. The CQDs have an average size of 2.5 nm and a narrow size distribution. They display strong blue fluorescence with a quantum yield of 24.8% and good biocompatibility. Notably, these CQDs were capable of detecting trace o-nitrophenol in surface water and sewage with high sensitivity and specificity. The linear range is 0.08-40 ?mol/L, and the limit of detection is 15.2 nmol/L. Furthermore, this CQDs was successfully applied for o-nitrophenol analysis in river water and sewage samples. Additionally, Hep3B cells, a human hepatocellular carcinoma cell line, can be easily imaged with high resolution using the as-prepared CQDs as nanoprobes. These results reveal that the as-prepared CQDs have potential applications for detecting o-nitrophenol and cell imaging.

SUBMITTER: Zhang Q 

PROVIDER: S-EPMC7411352 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Synthesis of Novel Fluorescent Carbon Quantum Dots From <i>Rosa roxburghii</i> for Rapid and Highly Selective Detection of o-nitrophenol and Cellular Imaging.

Zhang Qianchun Q   Liang Junyi J   Zhao Li L   Wang Yan Y   Zheng Yuguo Y   Wu Yun Y   Jiang Li L  

Frontiers in chemistry 20200731


A novel carbon quantum dots (CQDs) were successfully synthesized by one-step hydrothermal reaction using <i>Rosa roxburghii</i> as a biomass-based precursor. The CQDs have an average size of 2.5 nm and a narrow size distribution. They display strong blue fluorescence with a quantum yield of 24.8% and good biocompatibility. Notably, these CQDs were capable of detecting trace o-nitrophenol in surface water and sewage with high sensitivity and specificity. The linear range is 0.08-40 μmol/L, and th  ...[more]

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