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Polyazulene-Based Materials for Heavy Metal Ion Detection. 2. (E)-5-(azulen-1-yldiazenyl)-1H-Tetrazole-Modified Electrodes for Heavy Metal Sensing

机译:基于聚氮杂金属离子检测的材料。 2.(e)-5-(Azulen-1-yld亚基苯基)-1H-四唑 - 改性电极,用于重金属感测

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Azulene-based materials present very appealing properties for the preparation of advanced materials. They can be irreversibly electrooxidated, leading to polymers, which can be deposited on electrodes and modified. This paper shows several experiments concerning the preparation of modified electrodes based on (E)-5-(azulen-1-yldiazenyl)-1H-tetrazole (L). L has a tetrazole complexing unit, which can be attached to the electrode’s surface and recognized. L has been deeply characterized by electrochemical techniques. Complexing modified electrodes have been prepared and tested in different conditions. Functional modified electrodes based on L obtained by controlled potential electrolysis were examined by AFM and SEM to see the influences of charge and potential on the deposited polyz films’ morphologies. The modified electrodes prepared in different conditions have been tested for heavy metal ion sensing. The new azulene-based modified electrode demonstrated its feasibility for Pb ions analysis (detection limit of 5 × 10?8 M, and linear domain between 5 × 10?8 M and 10?6 M) and potential use in future applications for real water samples analysis.
机译:基于亚祖烯的材料具有非常有吸引力的性能,用于制备先进材料。它们可以是不可逆的电氧化,导致聚合物,其可以沉积在电极上并改性。本文介绍了基于(e)-5-(Azulen-1-YldaIazenyl)-1H-四唑(L)的改性电极的制备的几个实验。 L具有四唑络合单元,可连接到电极的表面并识别。 L深受电化学技术的特征。已在不同条件下制备和测试络合改性电极。通过AFM和SEM检查基于受控电位电解获得的L获得的功能改性电极,以查看沉积的Polyz薄膜形态的电荷和电位的影响。已经测试了在不同条件下制备的改进的电极用于重金属离子感测。基于氮素的改性电极对Pb离子分析的可行性(5×10?8米,线性域,5×10?8 m和10?6米)的可行性以及在未来的实际应用中的潜在用途样品分析。

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