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首页> 外文期刊>Sensors and Actuators >Fluorescence sensor array based on amino acid derived carbon dots for pattern-based detection of toxic metal ions
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Fluorescence sensor array based on amino acid derived carbon dots for pattern-based detection of toxic metal ions

机译:基于氨基酸衍生碳点的荧光传感器阵列,用于基于模式的有毒金属离子检测

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摘要

The development of convenient method for detection and identification of toxic metals ions is of great interest. In this work, we have developed a facile fluorescent sensor array based on luminescence carbon dots for detecting and differentiating a set of metal ions. Three kinds of nitrogen-doped carbon dots were synthesized by hydrothermal treatment of citric acid with three different amino acids (L-glycine, l-lysine and L-serine). These carbon dots had various surface states and thus exhibited diverse quenching responses to different metal ions. Six metal ions can be well distinguished at various concentrations (100, 50, 20 and 10 μM). The discrimination accuracy of unknown samples was found to be 100% at a concentration as low as 10 μM. In addition, the binary and ternary mixtures of three metal ions (Hg~(2+), Cu~(2+), Fe~(3+)) could also be well recognized with this sensor array. This method is simple, label-free, and the sensor arrays could be obtained and expanded easily with large-scale and low-cost. It will broaden the application field of carbon dots sensors and give a new direction of developing sensitive array sensing systems.
机译:开发一种检测和鉴定有毒金属离子的简便方法引起了人们的极大兴趣。在这项工作中,我们开发了一种基于发光碳点的简便荧光传感器阵列,用于检测和区分一组金属离子。通过用三种不同的氨基酸(L-甘氨酸,L-赖氨酸和L-丝氨酸)对柠檬酸进行水热处理,合成了三种氮掺杂碳点。这些碳点具有各种表面状态,因此表现出对不同金属离子的不同猝灭响应。六种金属离子在各种浓度(100、50、20和10μM)下都能很好地区分。未知样品的鉴别精度在低至10μM的情况下为100%。此外,该传感器阵列还可以很好地识别三种金属离子(Hg〜(2 +),Cu〜(2 +),Fe〜(3+))的二元和三元混合物。该方法简单,无标签,并且可以大规模,低成本地获得并轻松扩展传感器阵列。它将拓宽碳点传感器的应用领域,并为开发灵敏的阵列传感系统提供新的方向。

著录项

  • 来源
    《Sensors and Actuators》 |2017年第3期|1324-1330|共7页
  • 作者单位

    Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Beijing Key Lab of Radioactive Waste Treatment, Tsinghua University, Beijing, People's Republic of China;

    Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Beijing Key Lab of Radioactive Waste Treatment, Tsinghua University, Beijing, People's Republic of China;

    Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Beijing Key Lab of Radioactive Waste Treatment, Tsinghua University, Beijing, People's Republic of China;

    Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Beijing Key Lab of Radioactive Waste Treatment, Tsinghua University, Beijing, People's Republic of China;

    Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Beijing Key Lab of Radioactive Waste Treatment, Tsinghua University, Beijing, People's Republic of China;

    Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Beijing Key Lab of Radioactive Waste Treatment, Tsinghua University, Beijing, People's Republic of China;

    Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Beijing Key Lab of Radioactive Waste Treatment, Tsinghua University, Beijing, People's Republic of China;

    Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Beijing Key Lab of Radioactive Waste Treatment, Tsinghua University, Beijing, People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Carbon dots; Sensor array; Metal ions; Amino acid; Fluorescence;

    机译:碳点;传感器阵列金属离子;氨基酸;荧光性;

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