首页> 外国专利> Molecularly imprinted conducting polymer film based aqueous amino acid sensors

Molecularly imprinted conducting polymer film based aqueous amino acid sensors

机译:基于分子印迹导电聚合物薄膜的水性氨基酸传感器

摘要

Molecularly imprinted conducting polymer (MICP) films were electro-polymerized on glassy carbon electrode having specific recognition sites for amino acid viz. L-tyrosine and/or L-cysteine. The amino acid templates in various imprinted films were ejected out by over-oxidation followed by washing and stabilization. Again, the template leached MICP films were modified with metal oxides [oxides of Cu2+, Hg2+, Pd2+, Au3+, Pt4+ etc]. The resultant leached MICP and metal oxide modified template leached MICP film based GCE will now selectively sense L-tyrosine and/or L-cysteine in aqueous media by direct and catalytic means respectively employing differential pulse voltammetric waveform. The sensitivity and selectivity of the sensors prepared by the invention are high and the stability is good, which will be widely used in clinical diagnostics, chemical industry, environment protection and other related fields.
机译:分子印迹导电聚合物(MICP)薄膜在具有特定氨基酸识别位点的玻璃碳电极上电聚合。 L-酪氨酸和/或L-半胱氨酸。各种印迹膜中的氨基酸模板通过过氧化被排出,然后洗涤并稳定化。再次,用金属氧化物[Cu 2 + ,Hg 2 + ,Pd 2 + ,Au < Sup> 3 + ,Pt 4 + 等]。现在,所得的浸出的MICP和基于GCE的金属氧化物改性的模板浸出的MICP膜将通过分别采用差分脉冲伏安波形的直接方法和催化方法选择性地感测水性介质中的L-酪氨酸和/或L-半胱氨酸。本发明制备的传感器灵敏度高,选择性好,稳定性好,将广泛应用于临床诊断,化学工业,环境保护等相关领域。

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