首页> 外文期刊>Ultrasonics sonochemistry >Rapid sonochemical synthesis of silver nano-leaves encapsulated on iron pyrite nanocomposite: An excellent catalytic application in the electrochemical detection of herbicide (Acifluorfen)
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Rapid sonochemical synthesis of silver nano-leaves encapsulated on iron pyrite nanocomposite: An excellent catalytic application in the electrochemical detection of herbicide (Acifluorfen)

机译:封装在铁硫铁矿纳米复合材料上的银纳米叶的快速散发性合成:在除草剂的电化学检测中的优异催化应用(Acifluorfen)

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摘要

Herein, we developed a silver nanoparticles decorated iron pyrite flowers (FeS2@Ag NL) based nanocomposite was prepared by a sonochemical method. The formation of FeS2@Ag NL nanocomposite was confirmed by XRD, XPS, HR-TEM and analytical techniques. The FeS2@Ag NL/SPCE was potentially applied towards electrochemical detection of toxic herbicide (acifluorfen-AFF). This provided an efficient sensor platform anchoring FeS2@Ag NL on its surface. Under optimized conditions of differential pulse voltammetric transduction, a linear relationship between the current and the concentration was obtained in the range of 0.05-1126.45 mu M for Acifluorfen. The detection limit was observed to be 0.0025 mu M. the modified sensor exhibits excellent electrochemical performance, including good linear range, nanomolar detection limit, high sensitivity, and desirable stability. Particularly, the practical applicability was revealed by quantifying the AFF concentration in biological samples.
机译:在此,我们开发了一种银纳米颗粒装饰的铁硫铁矿花(FES2 @ Ag N1)的纳米复合材料通过多位化学方法制备。 通过XRD,XPS,HR-TEM和分析技术确认FES2 @ Ag Nl纳米复合物的形成。 FES2 @ Ag NL / SPCE可能朝向有毒除草剂的电化学检测(Acifluorfen-Aff)。 这提供了一个高效的传感器平台锚固FES2 @ AG NL的表面。 在差分脉冲伏安转导的优化条件下,在丙氟氟芬的0.05-1126.45μm的范围内获得电流与浓度之间的线性关系。 观察到检测极限为0.0025μm.修饰的传感器表现出优异的电化学性能,包括良好的线性范围,纳米摩尔检测极限,高灵敏度和理想的稳定性。 特别地,通过量化生物样品中的酵素浓度来揭示实际适用性。

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