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Role of redox-active axial ligands of metal porphyrins adsorbed at solid–liquid interfaces in a liquid-STM setup

机译:在液体-STM设置中固体液体界面吸附金属卟啉的氧化还原活性轴向配体的作用

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摘要

In a liquid-STM setup environment, the redox behavior of manganese porphyrins was studied at various solid–liquid interfaces. In the presence of a solution of Mn(III)Cl porphyrins in 1-phenyloctane, which was placed at a conductive surface, large and constant additional currents relative to a set tunneling current were observed, which varied with the magnitude of the applied bias voltage. These currents occurred regardless of the type of surface (HOPG or Au(111)) or tip material (PtIr, Au or W). The additional currents were ascribed to the occurrence of redox reactions in which chloride is oxidized to chlorine and the Mn(III) center of the porphyrin moiety is reduced to Mn(II). The resulting Mn(II) porphyrin products were identified by UV–vis analysis of the liquid phase. For solutions of Mn(III) porphyrins with non-redox active acetate instead of chloride axial ligands, the currents remained absent.
机译:在液体-STM设置环境中,在各种固液界面中研究了锰卟啉的氧化还原行为。在存在溶液中的Mn(III)Cl卟啉的溶液中,将其置于导电表面处,观察到相对于设定的隧道电流的大而恒定的电流,其随着施加的偏置电压的大小而变化。无论表面的类型(Hopg或Au(111))或尖端材料(ptir,au或w),都会发生这些电流。将额外的电流归因于氧化铈被氧化成氯,卟啉部分的Mn(III)中心降至Mn(II)。通过UV-VIS分析液相鉴定所得Mn(II)卟啉产物。对于具有非氧化还原活性乙酸酯代替氯化物轴向配体的Mn(III)卟啉的溶液,仍然存在。

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