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首页> 外文期刊>ACS nano >Noncovalent bicomponent self-assemblies on a silicon surface
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Noncovalent bicomponent self-assemblies on a silicon surface

机译:硅表面上的非共价双组分自组装

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摘要

Two-dimensional supramolecular multicomponent networks on surfaces are of major interest for the building of highly ordered functional materials with nanometer-sized features especially designed for applications in nanoelectronics, energy storage, sensors, etc. If such molecular edifices have been previously built on noble metals or HOPG surfaces, we have successfully realized a 2D open supramolecular framework on a silicon adatom-based surface under ultrahigh vacuum with thermal stability up to 400 K by combining molecule-molecule and molecule-silicon substrate interactions. One of these robust open networks was further used to control both the growth and the periodicity of the first bicomponent arrays without forming any covalent bond with a silicon surface. Our strategy allows the formation of a well-controlled long-range periodic array of single fullerenes by site-specificity inclusion into a bicomponent supramolecular network.
机译:表面上的二维超分子多组分网络对于构建具有纳米尺寸特征的高度有序功能材料特别感兴趣,特别是设计用于纳米电子学,能量存储,传感器等的应用。如果此类分子大厦先前已建立在贵金属上或HOPG表面,通过结合分子-分子和分子-硅底物相互作用,我们已经成功地在超高真空下在硅吸附原子基表面上实现了2D开放式超分子框架,热稳定性高达400K。这些鲁棒的开放网络中的一个还被用来控制第一双组分阵列的生长和周期性,而不与硅表面形成任何共价键。我们的策略允许通过将位点特异性包含到双组分超分子网络中,形成单个富勒烯的良好控制的远程周期性阵列。

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