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Magnetic field effects on electrochemical property of self-assembled monolayers with charge-transfer groups

机译:磁场对带有电荷转移基团的自组装单分子层电化学性能的影响

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摘要

Novel self-organization molecules, n-mercapto-alkyl benzo-annelated tetrathiafulvalenes (BTTF), have been synthesized. Exposure of polycrystalline Au and oriented crystalline Au (111) surfaces to organic solution of the novel BTTF derivatives in high magnetic field results in the binding of the derivatives to Au and the formation of highly-oriented self-assembled monolayers (SAMs) with redox active tetrahia-fulvalene (TTF) unit. The electrochemical properties were confirmed in the monolayer state. A comparison between SAMs on polycrystalline Au having a rough surface andon oriented crystalline Au (111) having a flat surface suggested that the well-oriented alkyl-chain layers in the SAMs could be blockade for the electron transfer between the TTF unit and the Au substrate.
机译:合成了新型的自组织分子,n-巯基烷基苯甲酰化的四硫富瓦烯(BTTF)。在强磁场中,将多晶金和取向晶体金(111)表面暴露于新型BTTF衍生物的有机溶液中,导致衍生物与金结合,并形成具有氧化还原活性的高取向自组装单分子膜(SAMs)四氢富瓦烯(TTF)单元。在单层状态下确认了电化学性质。在具有粗糙表面的多晶Au和具有平坦表面的取向的晶体Au(111)上的SAM之间的比较表明,SAM中的取向良好的烷基链层可能会被阻挡,从而在TTF单元和Au衬底之间进行电子转移。

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