基于纳米复合材料的氨基甲酸酯和有机磷农药无酶电化学传感器检测

Q3 Materials Science Current Nanomaterials Pub Date : 2022-01-17 DOI:10.2174/2405461507666220117114205
T. Y. Feyisa, Kirubel Teshome Tadele
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引用次数: 0

摘要

氨基甲酸酯和有机磷农药的过量施用显示出相对较高的急性毒性,这是由于昆虫和哺乳动物神经系统中的乙酰胆碱酯酶受到抑制。本综述旨在评估目前基于纳米复合材料的无酶电化学传感器在有机磷和氨基甲酸酯类农药检测方面的卓越性能。基于酶的电化学传感器(生物传感器)和经典(色谱)方法已被广泛用于有机磷和氨基甲酸酯类农药的检测。然而,与酶和复杂样品制备相关的不稳定性、对训练有素的人力的需求以及与色谱技术相关的其他许多缺点限制了它们在许多条件下用于农药检测。因此,目前,对于许多研究人员来说,基于纳米复合材料的无酶电化学传感器是基于酶的传感器的良好替代品。综述的文献表明,具有许多优点的基于纳米复合物的无酶传感器在农药检测中显示出与酶集成传感器相当的灵敏度。目前,纳米复合材料被广泛用于许多应用,包括制造有前景的农药检测传感器。有希望的传感潜力可能归因于纳米材料表面的特殊官能团及其复合形式,使它们能够取代那些昂贵的生物识别元件(酶),并用作检测农药的非生物识别元件。
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Nanocomposite Based Enzyme-less Electrochemical Sensors for Carbamate and Organophosphorus Pesticides Detection
The excessive application of carbamate and organophosphorus pesticides showed relatively high acute toxicity due to inhibition of acetylcholinesterase enzyme in the neural system of insects and mammals. This review aimed to assess the current outstanding performance of nanocomposite based enzyme-less electrochemical sensors toward determination of organophosphorus and carbamate pesticides detection. Enzyme based electrochemical sensor (biosensor) and classical (chromatographic) methods have been used widely for detection of organophosphorus and carbamate pesticides. However, instability related to enzymes and complex sample preparation, need for highly trained manpower and other numerous disadvantages associated with chromatographic techniques limit their application for pesticides detection in many conditions. Therefore, currently, nanocomposite based enzyme-less electrochemical sensors are good alternative to enzyme-based sensors for many researchers The reviewed literature revealed that, nanocomposite based enzyme-less sensors with numerous advantages have shown a comparable sensitivity with enzyme-integrated sensor for pesticide detection. Currently nanocomposite materials are widely used for many applications including the fabrication of promising sensors for pesticide detections. The promising sensing potential might be attributed to the special functional groups on the surface of the nanomaterials and their composite form, enabling them to substitute those expensive bio-recognition elements (enzymes) and used as non-bio-recognition element for detection of pesticides.
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来源期刊
Current Nanomaterials
Current Nanomaterials Materials Science-Materials Science (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
53
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