大学化学 >> 2023, Vol. 38 >> Issue (4): 78-87.doi: 10.3866/PKU.DXHX202211048

所属专题: 第3届全国大学生化学实验创新设计竞赛

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RGB阵列式荧光传感技术用于检测高原湖泊中多种重金属离子

马璐瑶, 张钧富, 陈怡橦, 杨通()   

  • 收稿日期:2022-11-15 录用日期:2022-12-20 发布日期:2023-03-17
  • 通讯作者: 杨通 E-mail:yangtong2018@ynnu.edu.cn

RGB Array Fluorescent Sensing Technology for the Detection of Multiple Heavy Metal Ions in Plateau Lakes

Luyao Ma, Junfu Zhang, Yitong Chen, Tong Yang()   

  • Received:2022-11-15 Accepted:2022-12-20 Published:2023-03-17
  • Contact: Tong Yang E-mail:yangtong2018@ynnu.edu.cn

摘要:

众所周知,重金属离子难在自然界中降解,一定量的重金属离子会在生物体中发生富集,严重威胁生命体健康。云南省拥有丰富的高原湖泊淡水资源,开展对高原湖泊重金属污染的研究,有助于深入了解高原湖泊重金属污染的现状,为其治理提供依据。荧光探针在重金属离子检测方面具有灵敏度高、选择性好、操作简单等优点。本新创实验将合成三种不同荧光发射的纳米材料:碳点(CDs,蓝色)、量子点(CdTe QDs,绿色)、金纳米簇(Au NCs,红色)。在96孔板中,分别加入以上三种荧光纳米探针以及CDs和Au NCs的混合式比率型探针,形成5 × 12的阵列形式,通过荧光猝灭及比率荧光的方式实现对高原湖泊水样中Pb2+、Cu2+、Hg2+的检测。本实验还在紫外灯下,借助智能手机APP——Colorimeter X读取溶液的R、G、B值,基于此可实现金属离子的便捷式检测。本新创实验仪器小型化、高通量检测、视觉效果好,在应用于高校综合性实验开展方面,可解决部分高校实验仪器短缺、本科实验枯燥、与科研前沿相脱轨的问题。

关键词: RGB阵列式分析, 纳米荧光探针, 手机检测, 高原湖泊, 重金属离子

Abstract:

As we all know, heavy metal ions are difficult to degrade in nature, and a certain amount of heavy metal ions will be enriched in living organisms, which seriously threatens the health of life. Yunnan Province has abundant freshwater resources in plateau lakes. The research on heavy metal pollution in plateau lakes is conducive to in-depth understanding of the current situation of heavy metal pollution in plateau lakes, which can provide a basis for its comprehensive control. Fluorescent nanoprobes exhibit advantages such as high sensitivity, good selectivity and simple operation in the detection of heavy metal ions. Three nanomaterials with different fluorescence-emission including carbon dots (CDs, blue), quantum dots (CdTe QDs, green), and gold nanoclusters (Au NCs, red) were successfully synthesized. Then, the above three fluorescent nanoprobes and the mixed ratiometric probes of CDs and Au NCs were added into the 96-well plate to form a 5 × 12 array which was used to detect Pb2+, Cu2+ and Hg2+ in the plateau lake water sample based on the fluorescence quenching and ratiometric fluorescence. In addition, the RGB values of the above solution in 96-well plate were recorded by APP-Colorimeter X in smartphone under the ultraviolet lamp. This proposed method exhibited superior testing performances toward Pb2+, Cu2+ and Hg2+, including portability, high-throughout, sensitivity, good visual effect, miniaturization, and small volume. Finally, this newly created experiment can solve the shortage problems of experimental instruments in some universities, boring undergraduate experiments, and derailment with the frontier of scientific research, which can facilitate the development of comprehensive experiments in universities.

Key words: RGB array analysis, Fluorescent nanoprobe, Smartphone detection, Plateau lake, Heavy metal ions