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Minimally Invasive Characterization of Covalent Mono layer Sheets Using Tip-Enhanced Raman Spectroscopy

机译:使用尖端增强拉曼光谱技术对共价单层薄板进行微创表征

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摘要

Synthetic covalent monolayer sheets and their subclass, two-dimensional polymers are of particular interest in materials science because of their special dimensionality which renders them very different from any bulk matter. However, structural analysis of such entities is rather challenging, and there is a clear need for additional analytical Methods. The present study shows how tip-enhanced Raman spectroscopy (TERS) can be performed on monomer monolayers and the covalent sheets prepared from them by [4 + 4]-cycloaddition to explore rather complex structural and mechanistic issues. TERS is a surface analytical method that combines the high lateral resolution of scanning probe microscopy (SPM) with a greatly enhanced Raman scattering intensity. The high spatial resolution (<60 nm) and the significantly improved sensitivity (contrast factor of >4000) compared to confocal Raman microscopy provides new insights into the formation of this new and exciting material, namely significant consumption of the reactive units (anthracenes) and exclusion of the alternative [4 + 2]-cycloaddition. Moreover, due to the high lateral resolution, it was possible to find a first spectroscopic hint for step growth as the dominant mechanism in the formation of these novel monolayer sheets. In addition, TERS was used to get first insights into the phase behavior of a comonomer mixture.
机译:合成共价单层片材及其子类二维聚合物在材料科学中特别受关注,因为它们具有特殊的尺寸,这使其与任何大块物质都大为不同。但是,对此类实体进行结构分析非常具有挑战性,并且显然需要其他分析方法。本研究表明如何对单体单分子层和通过[4 + 4]-环加成法从它们制备的共价片进行尖端增强拉曼光谱(TERS),以探索相当复杂的结构和机理问题。 TERS是一种表面分析方法,结合了扫描探针显微镜(SPM)的高横向分辨率和大大提高的拉曼散射强度。与共聚焦拉曼显微镜相比,高空间分辨率(<60 nm)和显着提高的灵敏度(对比度> 4000)为这种新型和令人兴奋的材料的形成提供了新见解,即大量消耗了反应单元(蒽)和排除替代的[4 + 2]-环加成。此外,由于较高的横向分辨率,有可能找到阶跃生长的第一个光谱学提示,作为形成这些新型单层片材的主要机理。此外,使用TERS可以初步了解共聚单体混合物的相态。

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