...
首页> 外文期刊>Nanotechnology >Trimetallic metal-organic frameworks (Fe, Co, Ni-MOF) derived as efficient electrochemical determination for ultra-micro imidacloprid in vegetables
【24h】

Trimetallic metal-organic frameworks (Fe, Co, Ni-MOF) derived as efficient electrochemical determination for ultra-micro imidacloprid in vegetables

机译:三金属金属有机骨架(Fe、Co、Ni-MOF)作为蔬菜中超微量吡虫啉的高效电化学测定

获取原文
获取原文并翻译 | 示例

摘要

The excessive use of imidacloprid in agricultural production leads to a large number of residues that seriously threaten human health. Therefore, the detection of imidacloprid has become very important. But how to quantitatively detect imidacloprid at ultra-low levels is the main challenges. In this work, trimetallic metal-organic frameworks Fe, Co, Ni-MOF (FCN-MOF) is in situ prepared on nickel foam (NF) and then used to make an electrochemical sensor in the detection of imidacloprid. FCN-MOF exhibits the characteristics of ultra-micro concentration detection for imidacloprid with high specific surface area and rich active metal centers. The high conductivity and 3D skeleton structure of the NF electrode enhance the contact site with imidacloprid and promote the transmission of electrons efficiently. All results show that the prepared electrochemical sensor has the advantages of ultra-low detection limits (0.1 pM), wide linear detection ranges (1-5 x 10(7) pM) and good sensitivity (132.91 mu A pM(-1) cm(-2)), as well as good reproducibility, excellent anti-interference ability, and fantastic stability. Meanwhile, the electrochemical sensor is used to determine imidacloprid in lettuce, tomato, and cucumber samples with excellent recovery (90-102.7). The novel electrochemical sensor is successfully applied to the ultra-micro detection of imidacloprid in vegetables, which provides a new way for the efficient monitoring of imidacloprid in agriculture.
机译:吡虫啉在农业生产中的过量使用导致大量残留物严重威胁人体健康。因此,吡虫啉的检测变得非常重要。但如何定量检测超低水平吡虫啉是主要挑战。本工作在泡沫镍(NF)上原位制备了三金属金属有机骨架Fe、Co、Ni-MOF(FCN-MOF),然后用于制造吡虫啉检测中的电化学传感器。FCN-MOF具有吡虫啉超微量浓度检测的特点,具有高比表面积和丰富的活性金属中心。NF电极的高导电性和3D骨架结构增强了与吡虫啉的接触部位,有效地促进了电子的传输。结果表明,所制备的电化学传感器具有超低检出限(0.1 pM)、宽线性检测范围(1-5 x 10(7) pM)、灵敏度好(132.91 μ A pM(-1) cm(-2))、重现性好、抗干扰能力强、稳定性好等优点。同时,利用电化学传感器测定生菜、番茄、黄瓜样品中的吡虫啉,回收率极高(90%-102.7%)。该新型电化学传感器成功应用于蔬菜中吡虫啉的超微量检测,为农业中吡虫啉的高效监测提供了新的途径。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号