聚苯胺
分子印迹
印记(心理学)
化学
选择性
聚合物
组合化学
导电聚合物
分子印迹聚合物
有机化学
催化作用
生物化学
聚合
基因
作者
Вита Н. Никитина,Nikolay V. Zaryanov,Ivan Kochetkov,Elena E. Karyakina,Anatoly K. Yatsimirsky,Arkady A. Karyakin
标识
DOI:10.1016/j.snb.2017.02.073
摘要
The majority of reagentless affinity sensors suffer from poor selectivity because specific binding and non-specific interactions generate responses in the same direction, commonly causing resistance increase. We report on the advanced transducer, synthesized in course of molecular imprinting, which generates conductivity increase as a result of specific binding. Electropolymerization of 3-aminophenylboronic acid (3-APBA) known to yield conductive polyaniline only in the presence of F−, has been carried substituted the latter for hydroxy acids. The achieved synthesis of conductive polymer in course of fluoride-free 3-APBA electropolymerization indicates successful imprinting of hydroxy acids. Imprinting poly(3-APBA) provides as 10–15 times increased, as even decreased binding constants towards target analytes as compared to the non-imprinted polymer. This allows one to achieve the desired selectivity among polyols. Tuning binding properties of boronate functionalized polyaniline we’ve demonstrated the enzyme-free selective detection of saccharides and hydroxy acids via conductivity increase of the conductive polymer.
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