4.7 Article

Employing a fluorescent and colorimetric picolyl-functionalized rhodamine for the detection of glyphosate pesticide

期刊

TALANTA
卷 224, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.talanta.2020.121834

关键词

Glyphosate; Pesticide residue; Chemosensor; Rhodamine; Ultrasensitive detection

资金

  1. Natural Science Foundation of China [21202132, 21505105, 21874108]
  2. Key Research and development Projects of Shaanxi Province [2020NY-113]
  3. Open Foundation of State Key Laboratory of Crystal Materials [KF1806]

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The ongoing poisoning of agricultural products has made security a major concern, with pesticide residue exceeding standard rates being the main issue. There is an urgent need for monitoring and developing sensitive detection systems for pesticide residues.
The ongoing poisoning of agricultural products has pushed the security problem to become an important issue. Among them, exceeding the standard rate of pesticide residues is the main factor influencing the quality and security of agricultural products. Monitoring pesticide residues and developing simple, yet ultrasensitive detection systems for pesticide residues are urgently needed. In this study, we successfully developed a novel rhodamine derivative as fluorescent and colorimetric chemosensor R-G for the rapid, selective and ultrasensitive detection of glyphosate pesticide residue in aqueous solution. Through a Cu2+-indicator displacement strategy, glyphosate can displace an indicator (R-G) from a Cu2+-indicator complex due to its strong affinity to bind with Cu2+ to give a turn-on fluorescence and distinct color change. Moreover, a test strip was also fabricated to achieve a facile detection of glyphosate pesticide. To demonstrate the possibility of practical applications, glyphosate was detected on the surface of cabbage and in a spiked soil sample. The detection limit of 4.1 nM and the response time of 2 min indicate that the method is enough sensitive and rapid to detect the glyphosate residue at or below levels that pose a health risk.

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