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首页> 外文期刊>ACS Omega >Microfluidic Affinity Sensor Based on a Molecularly Imprinted Polymer for Ultrasensitive Detection of Chlorpyrifos
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Microfluidic Affinity Sensor Based on a Molecularly Imprinted Polymer for Ultrasensitive Detection of Chlorpyrifos

机译:基于分子印迹聚合物的微流体亲和力传感器,用于超声检测氯吡啶

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The persistent use of pesticides in the agriculture field remains a serious issue related to public health. In the present work, molecularly imprinted polymer thin films were developed using electropolymerization of pyrrole (py) onto gold microelectrodes followed by electrodeposition for the selective detection of chlorpyrifos (CPF). The molecularly imprinted polymer (MIP) was synthesized by the electrochemical deposition method, which allowed in-line transfer of MIP on gold microelectrodes without using any additional adhering agents. Various parameters such as pH, monomer ratio, scan rate, and deposition cycle were optimized for sensor fabrication. The sensor was characterized at every stage of fabrication using various spectroscopic, microscopic, and electrochemical techniques. The sensor requires only 2 μL of the analyte and its linear detection range was found to be 1 μM to 1 fM. The developed sensor’s limit of detection (LOD) and limit of quantification (LOQ) were found to be 0.93 and 2.82 fM, respectively, with a sensitivity of 3.98 (μA/(μM)/ mm~(2). The sensor’s shelf life was tested for 70 days. The applicability of the sensor in detecting CPF in fruit and vegetable samples was also assessed out with recovery % between 91 and 97% (RSD < 5%). The developed sensor possesses a huge commercial potential for on-field monitoring of pesticides.
机译:持续使用农业领域的农药仍然是与公共卫生有关的严重问题。在本作工作中,使用吡咯(PY)的电聚合物在金微电极上进行分子印迹聚合物薄膜,然后电沉积用于选择性检测氯吡啶(CPF)。通过电化学沉积方法合成分子印迹聚合物(MIP),其允许在金微电极上允许在不使用任何额外的粘合剂的情况下在金微电极上在线转移。针对传感器制造优化了各种参数,例如pH,单体比,扫描速率和沉积周期。传感器的特征在于使用各种光谱,微观和电化学技术在制造的每个阶段。传感器仅需要2μL分析物,并且其线性检测范围被发现为1μm至1 fm。发达的传感器的检测极限(LOD)和定量限制(LOQ)分别为0.93和2.82 fm,灵敏度为3.98(μm/(μm)/ mm〜(2)。传感器的保质期测试70天。在果实和植物样品中检测CPF在果实和蔬菜样品中的适用性也在91和97%之间进行评估(RSD <5%)。发达的传感器具有巨大的商业潜力,用于现场监测杀虫剂。

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