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An Amperometric Immunosensor Based on Carbon Nanotube Embedded Conducting Polymer

机译:基于碳纳米管嵌入式电导聚合物的安培测定免疫传感器

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An amperometric immunosensor based on a multiwall carbon nanotubes (MWCNTs) embedded conducting polymer, poly 5, 2': 5', 2"- terthiophene- 3'- carboxylic acid (pTTCA), was developed and the sensor was applied for the detection of IgG. The presence of MWCNTs could enhance the conductivity of pTTCA polymer film and consequently, the overall performance of the immunosensor developed was also improved. To amplify the sensitivity of the immunosensor, a conventional sandwich type immune-sensing approach was altered by using hydrazine with co-modified MWCNTs. Hydrazine was used as a multi-label strategy for the detection of amperometric signal and showed a good catalytic property to the reduction of hydrogen peroxide. The physical and surface characteristics were studied for each modification step by scanning electron microscopy (SEM). A calibration curve was constructed and showed a dynamic linear range from 1.0 ng/mL to 5.0 ng/mL with the detection limit of 0.087 ng/mL.
机译:开发了基于多壁碳纳米管(MWCNT)嵌入的导电聚合物,聚5,2':5',2“ - 萜烯-3'-羧酸(PTTCA)的嵌入式免疫传感器,并将传感器应用于检测IgG。MWCNT的存在可以增强PTTCA聚合物膜的导电性,因此,还改善了免疫传感器的整体性能。为了扩增免疫传感器的敏感性,通过使用肼改变了传统的夹心式免疫感测方法。共同修饰的MWCNT。肼用作检测安培信号的多标签策略,并显示出良好的过氧化氢的催化性质。通过扫描电子显微镜(SEM)对每个修饰步骤研究了物理和表面特性(SEM )。构造校准曲线并显示动态线性范围为1.0ng / ml至5.0ng / ml,检测限为0.087 ng / ml。

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