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首页> 外文期刊>Journal of the Brazilian Chemical Society >Development of a Molecularly Imprinted Modified Electrode to Evaluate Phenacetin Based on the Preconcentration of Acetaminophen
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Development of a Molecularly Imprinted Modified Electrode to Evaluate Phenacetin Based on the Preconcentration of Acetaminophen

机译:基于对乙酰氨基酚浓度的分子印迹修饰电极评价非那西丁的开发

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摘要

>A glassy carbon electrode modified with a molecularly imprinted polymer (MIP) containing phenacetin recognition sites is introduced. The phenacetin-selective MIP was synthesised based on the electropolymerisation of pyrrole in a 1:1 (v/v) water/ethanol with HClO4 solution. The MIP-modified electrode showed higher recognition ability in comparison with a bare electrode for procaine and aminopyrine, reported to electrochemically interfere in the quantification of phenacetin in cocaine samples. In addition, the MIP was able to preconcentrate one of the intermediates of the phenacetin electrochemical oxidation, acetaminophen, indicating the possibility of monitoring phenacetin based on the acetaminophen oxidation. The acetaminophen oxidation peak is 15 times more detectable compared to the signal obtained by the non-molecularly imprinted polymer (NIP), and it occurs 450 mV below the phenacetin electrochemical oxidation signal. These achieved characteristics decrease the possibility of interference from other electrochemical reactions that may occur in the same potential range as phenacetin electrochemical process.
机译:引入了一种玻璃碳电极,该电极用含有非那西丁识别位点的分子印迹聚合物(MIP)改性。基于吡咯在1:1(v / v)的水/乙醇和HClO4溶液中的电聚合反应,合成了非那西丁选择性MIP。与裸露的普鲁卡因和氨基比林电极相比,MIP修饰的电极显示出更高的识别能力,据报道这种电极电化学干扰可卡因样品中的非那西丁定量。此外,MIP能够预浓缩非那西丁电化学氧化的中间体之一对乙酰氨基酚,表明有可能基于对乙酰氨基酚氧化来监测非那西丁。与通过非分子印迹聚合物(NIP)获得的信号相比,对乙酰氨基酚的氧化峰可检测到高15倍,并且比非那西丁电化学氧化信号低450 mV。这些获得的特性降低了可能在与非那西丁电化学过程相同的电势范围内发生的其他电化学反应产生干扰的可能性。

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