Li Ziqiang, Liang Shuang, Zhou Li, Luo Fengjian, Lou Zhengyun, Chen Zongmao, Zhang Xinzhong, Yang Mei
Tea Research Institute, Chinese Academy of Agricultural Sciences, Hangzhou 310008, China.
Key Laboratory of Biology, Genetics and Breeding of Special Economic Animals and Plants, Ministry of Agriculture and Rural Affairs, Hangzhou 310008, China.
Foods. 2023 Jun 26;12(13):2487. doi: 10.3390/foods12132487.
Glyphosate has excellent herbicidal activity, and its extensive use may induce residue in the environment and enter into humans living through the food chain, causing negative impact. Here, water-soluble 1.55 nm size nitrogen-doped carbon quantum dots (NCDs) with strong blue fluorescence were synthesized using sodium citrate and adenine. The maximum excitation and emission wavelengths of NCDs were 380 nm and 440 nm, respectively. The above synthesized NCDs were first used for the construction of a fluorescence sensor for glyphosate detection. It was found that Cu could quench the fluorescence of NCDs effectively through the photoinduced electron transfer (PET) process, which was confirmed using fluorescence lifetime measurements. Additionally, the fluorescence was restored with the addition of glyphosate. Hence, a sensitive turn-on fluorescence sensor based on NCDs/Cu for glyphosate analysis was developed. The LODs of glyphosate for water and rice samples were recorded as 0.021 μg/mL and 0.049 μg/mL, respectively. The sensor was applied successfully for ultrasensitive and selective detection of glyphosate in environmental water and rice samples with satisfied recoveries from 82.1% to 113.0% using a simple sample pretreatment technique. The proposed strategy can provide a significant potential for monitoring glyphosate residue in water and agricultural product samples.
草甘膦具有优异的除草活性,其广泛使用可能导致环境残留,并通过食物链进入人类生活,造成负面影响。在此,使用柠檬酸钠和腺嘌呤合成了具有强蓝色荧光的水溶性1.55纳米尺寸的氮掺杂碳量子点(NCDs)。NCDs的最大激发波长和发射波长分别为380纳米和440纳米。上述合成的NCDs首次用于构建用于草甘膦检测的荧光传感器。研究发现,铜可以通过光致电子转移(PET)过程有效猝灭NCDs的荧光,这通过荧光寿命测量得到了证实。此外,加入草甘膦后荧光恢复。因此,开发了一种基于NCDs/Cu的用于草甘膦分析的灵敏的开启型荧光传感器。水和大米样品中草甘膦的检测限分别记录为0.021微克/毫升和0.049微克/毫升。该传感器通过简单的样品预处理技术成功应用于环境水和大米样品中草甘膦的超灵敏和选择性检测,回收率在82.1%至113.0%之间,结果令人满意。所提出的策略可为监测水和农产品样品中的草甘膦残留提供巨大潜力。