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Self Assembled Films of Porphyrins with Amine Groups at Different Positions: Influence of Their Orientation on the Corrosion Inhibition and the Electrocatalytic Activity

机译:具有不同位置胺基的卟啉自组装膜:其取向对缓蚀性能和电催化活性的影响

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Self-assembled molecular films of two cobalt porphyrins with amine groups at different positions—(5,10,15,20-tetrakis-(2-aminophenyl) porphyrin-cobalt(II), [Co(II) (T(o-NH2)PP)] and (5,10,15,20-tetrakis-(4-aminophenyl) porphyrin-cobalt(II), [Co(II)(T(p-NH2)PP)]—were formed on a gold substrate. The functionalized surfaces were characterized using Raman spectroscopy, atomic force microscopy and electrochemical methods. Both modified gold surfaces completely mask the charge transfer of a [Fe(CN)6]3?/4? redox couple in solution, indicating the layer is highly resistive in behavior. Electrochemical impedance spectroscopy analyses revealed that the porphyrin film with amine groups at ortho positions shows a higher charge-transfer resistance with a better protective behavior compared to the para position modified surface. Raman, AFM and EIS data suggests that an ortho amine positioned molecule forms a more compact layer compared to the para-positioned molecule. This can be explained in terms of their orientation on the gold surface. [Co(II)(T(o-NH2)PP)] adopted a saddle shape orientation whereas [Co(II)(T(p-NH2)PP)] adopted a flat orientation on the gold surface. The porphyrin modified gold electrode catalyzes the oxygen reduction at lower potentials compared to the bare gold electrode. The shift in the overvoltage was higher in case of molecules with flat orientation compared to the saddle shaped oriented porphyrin molecules on the surface.
机译:具有不同位置胺基的两种钴卟啉的自组装分子膜—((5,10,15,20-四-(2-氨基苯基)卟啉-钴(II),[Co(II)(T(o-NH 2 )PP)]和(5,10,15,20-四-(4-氨基苯基)卟啉-钴(II),[Co(II)(T(p-NH 2 PP)] —在金基底上形成,利用拉曼光谱,原子力显微镜和电化学方法对功能化表面进行了表征,两个修饰的金表面完全掩盖了[Fe(CN)<溶液中的sub> 6 ] 3?/ 4?氧化还原对,表明该层具有高电阻性,电化学阻抗谱分析表明邻位带有胺基的卟啉膜显示与对位修饰的表面相比,具有更高的电荷转移电阻和更好的保护性能拉曼光谱,原子力显微镜和EIS数据表明,与对位修饰的分子相比,邻胺定位的分子形成了更致密的层ed分子。这可以通过它们在金表面上的取向来解释。 [Co(II)(T(o-NH 2 )PP)采用鞍形取向,而[Co(II)(T(p-NH 2 )PP )]在金表面上采用平坦的方向。与裸金电极相比,卟啉修饰的金电极在较低的电势下催化氧还原。与表面上的鞍形取向的卟啉分子相比,具有平坦取向的分子的过电压偏移更高。

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    《Molecules》 |2012年第7期|共19页
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