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首页> 外文期刊>Angewandte Chemie >An Arylazopyrazole-Based N-Heterocyclic Carbene as a Photoswitch on Gold Surfaces: Light-Switchable Wettability, Work Function, and Conductance
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An Arylazopyrazole-Based N-Heterocyclic Carbene as a Photoswitch on Gold Surfaces: Light-Switchable Wettability, Work Function, and Conductance

机译:基于芳基吡唑基的N-杂环碳切菜作为金色表面的照相情节:可轻松可行的润湿性,功函数和电导

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摘要

A novel photoresponsive and fully conjugated N-heterocyclic carbene (NHC) has been synthesized that combines the excellent photophysical properties of arylazopyrazoles (AAPs) with an NHC that acts as a robust surface anchor (AAP-BIMe). The formation of self-assembled monolayers (SAMs) on gold was proven by ToF-SIMS and XPS, and the organic film displayed a very high stability at elevated temperatures. This stability was also reflected in a high desorption energy, which was determined by temperature-programmed SIMS measurements. E-/Z-AAP-BIMe@Au photoisomerization resulted in reversible alterations of the surface energy (i.e. wettability), the surface potential (i.e. work function), and the conductance (i.e. resistance). The effects could be explained by the difference in the dipole moment of the isomers. Furthermore, sequential application of a dummy ligand by microcontact printing and subsequent backfilling with AAP-BIMe allowed its patterning on gold. To the best of our knowledge, this is the first example of a photoswitchable NHC on a gold surface. These properties of AAP-BIMe@Au illustrate its suitability as a molecular switch for electronic devices.
机译:已经合成了一种新颖的光学考虑和完全缀合的N-杂环基石(NHC),其结合了芳基唑唑(AAP)的优异的光学性质与用作鲁棒表面锚定(AAP-BIME)的NHC。通过TOF-SIMS和XPS证明了在黄金上形成的自组装单层(SAM),有机膜在升高的温度下显示出非常高的稳定性。这种稳定性也反映在高解吸能中,该稳定性由温度编程的SIMS测量确定。 E- / Z-AAP-BIME @ AU光象化导致表面能量(即润湿性),表面电位(即功函数)和电导(即阻力)的可逆改变。可以通过异构体的偶极力矩的差异来解释效果。此外,通过微接触印刷和随后用AAP-BIME的回填顺序施加伪装配体,允许其图案化在金上。据我们所知,这是金表面上的照片开放NHC的第一个例子。 AAP-BIME @ AU的这些属性说明了其作为电子设备的分子开关的适用性。

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