首页> 外文会议>The 3rd International Symposium on Electrochemical Microsystem Technologies, Sep 11-15, 2000, Garmisch-Partenkirchen, Germany >Electropolymerized manganese porphyrin/polypyrrole films as catalytic surfaces for the oxidation of nitric oxide
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Electropolymerized manganese porphyrin/polypyrrole films as catalytic surfaces for the oxidation of nitric oxide

机译:电聚合锰卟啉/聚吡咯膜作为一氧化氮氧化的催化表面

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A porphyrin-based NO sensor has been prepared using Mn(II)-meso-tetracarboxyphenylporphyrin linked via a spacer chain to a pyrrole unit. By means of electrochemically induced formation of a porphyrin/polypyrrole film on the microelectrode a suitable catalytic surface for NO oxidation could be obtained. The modified electrode displays excellent electrocatalytic activity for the oxidation of NO at ~720 mV versus Ag/AgCl. A Nafion membrane coating was used as charge-selective layer in order to diminish interferences by negatively charged ions, especially NO_2~-. The response of the microsensor for NO-oxidation was monitored in phosphate buffer using differential pulse voltammetry and constant-potential amperometry. The detection limit in the latter case has been determined to be 1 X 10~(-7) M NO.
机译:使用通过间隔链连接至吡咯单元的Mn(II)-间-四羧基苯基卟啉制备了基于卟啉的NO传感器。通过在微电极上电化学诱导的卟啉/聚吡咯膜的形成,可以获得用于NO氧化的合适的催化表面。相对于Ag / AgCl,修饰的电极在〜720 mV的条件下对NO的氧化显示出优异的电催化活性。为了减少带负电荷的离子(尤其是NO_2〜-)的干扰,将Nafion膜涂层用作电荷选择层。使用差分脉冲伏安法和恒电位安培法在磷酸盐缓冲液中监测微传感器对NO氧化的响应。在后一种情况下的检测极限已确定为1 X 10〜(-7)M NO。

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