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Affinity sensor based on immobilized molecular imprinted synthetic recognition elements

机译:基于固定化分子印迹合成识别元件的亲和传感器

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An affinity sensor based on capacitive transduction was developed to detect a model compound, metergoline, in a continuous flow system. This system simulates the monitoring of low-molecular weight organic compounds in natural flowing waters, i.e. rivers and streams. During operation in such scenarios, control of the experimental parameters is not possible, which poses a true analytical challenge. A two-step approach was used to produce a sensor for metergoline. Submicron spherical molecularly imprinted polymers, used as recognition elements, were obtained through emulsion polymerization and subsequently coupled to the sensor surface by electropolymerization. This way, a robust and reusable sensor was obtained that regenerated spontaneously under the natural conditions in a river. Small organic compounds could be analyzed in water without manipulating the binding or regeneration conditions, thereby offering a viable tool for on-site application (C) 2015 Elsevier B.V. All rights reserved.
机译:开发了一种基于电容转导的亲和力传感器,以检测连续流系统中的模型化合物美特古琳。该系统模拟了在自然流动的水(即河流和溪流)中对低分子量有机化合物的监测。在这种情况下运行期间,无法控制实验参数,这构成了真正的分析挑战。采用了两步法来生产用于美特古琳的传感器。通过乳液聚合获得用作识别元件的亚微米球形分子印迹聚合物,然后通过电聚合将其偶联到传感器表面。这样,获得了一种坚固且可重复使用的传感器,该传感器可在河流的自然条件下自发再生。可以在水中分析小的有机化合物,而无需控制结合或再生条件,从而为现场应用提供了可行的工具(C)2015 Elsevier B.V.保留所有权利。

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