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首页> 外文期刊>Electroanalysis >The Fabrication of Structurally Multiordered Polyaniline Films and Their Application in Electrochemical Sensing and Biosensing
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The Fabrication of Structurally Multiordered Polyaniline Films and Their Application in Electrochemical Sensing and Biosensing

机译:结构多序聚苯胺薄膜的制备及其在电化学传感和生物传感中的应用

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摘要

Structurally multiordered thin films composed of conducting polymer polyaniline (PANI) were fabricated on homemade screen-printed carbon electrodes (SPEs). Formation of monolayered sulfate- or amine-modified PS templates on bulk polyaniline was assisted by various polyelectrolytes - negatively charged poly(sodium 4-styrenesulfonate) (PSS) and positively charged poly(diallyldimethylammonium chloride) (PDDA). Additional layers of PANI with controlled thickness were electrodeposited on the templated PANI-SPEs. Different morphologies of the outermost PANI films were obtained including PS-PANI core-shell and PS-PANI composites. It is shown that the surface charge of PS templates determines different mechanisms of polymer growth, which results in the above structures. The fact that nanostructured PANI films are grown on bulk PANI significantly increases the surface area and enhances the catalytic properties of such films. Removal of template particles by dissolving in toluene resulted in PANI hollow spheres and dimpled, semi-porous PANI films, respectively. As-prepared electrodes were used for the electrocatalytic reduction of nitrite. Upon further modifications with horseradish peroxidase, a biosensor was developed which could be used for the amperometric determination of H2O2. In the case of both analytes, catalytic responses were obtained only on multiordered PANI films. Difference in responses have been explained in terms of different morphologies and the different thickness of the outermost layers of PANI.
机译:在自制的丝网印刷碳电极(SPE)上制造由导电聚合物聚苯胺(PANI)组成的结构多阶薄膜。各种聚电解质(带负电荷的聚(4-苯乙烯磺酸钠)(PSS)和带正电荷的聚(二烯丙基二甲基氯化铵)(PDDA))有助于在本体聚苯胺上形成单层硫酸盐或胺改性的PS模板。将厚度受控的PANI的其他层电沉积在模板化的PANI-SPEs上。获得了最外层PANI膜的不同形态,包括PS-PANI核壳和PS-PANI复合材料。结果表明,PS模板的表面电荷决定了聚合物生长的不同机理,从而导致了上述结构。纳米结构的PANI膜在块状PANI上生长的事实显着增加了表面积并增强了此类膜的催化性能。通过溶解在甲苯中除去模板颗粒,分别得到了PANI中空球和凹坑的半多孔PANI膜。所制备的电极用于亚硝酸根的电催化还原。经过辣根过氧化物酶的进一步修饰,开发了一种生物传感器,该传感器可用于安培测定H2O2。在两种分析物的情况下,催化反应仅在多阶PANI膜上获得。响应的差异已根据PANI的不同形态和最外层的不同厚度进行了解释。

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