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通过溶液法和表面化学相结合合成的多孔纳米石墨的微观可视化。

Microscopic Visualization of Porous Nanographenes Synthesized through a Combination of Solution and On-Surface Chemistry.

机构信息

Centre for Nanometer-Scale Science and Advanced Materials, NANOSAM, Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University.

Centro de Investigación en Química Biolóxica e Materiais Moleculares (CiQUS), Departamento de Química Orgánica, Universidade de Santiago de Compostela.

出版信息

J Vis Exp. 2021 Mar 4(169). doi: 10.3791/62122.

Abstract

On-surface synthesis has recently been regarded as a promising approach for the generation of new molecular structures. It has been particularly successful in the synthesis of graphene nanoribbons, nanographenes and intrinsically reactive and instable, yet attractive species. It is based on the combination of solution chemistry aimed at preparation of appropriate molecular precursors for further ultra-high vacuum surface assisted transformations. This approach also owes its success to an incredible development of characterization techniques, such as scanning tunneling/atomic force microscopy and related methods, which allow detailed, local characterization at atomic scale. While the surface-assisted synthesis can provide molecular nanostructures with outstanding precision, down to single atoms, it suffers from basing on metallic surfaces and often limited yield. Therefore, the extension of the approach away from metals and the struggle to increase productivity seem to be significant challenges toward wider applications. Herein, we demonstrate the on-surface synthesis approach for generation of non-planar nanographenes, which are synthesized through a combination of solution chemistry and sequential surface-assisted processes, together with the detailed characterization by scanning probe microscopy methods.

摘要

表面合成最近被认为是生成新分子结构的一种很有前途的方法。它在合成石墨烯纳米带、纳米石墨烯以及内在反应性和不稳定性但有吸引力的物种方面特别成功。它基于组合溶液化学,旨在制备合适的分子前体,以进一步进行超高真空表面辅助转化。这种方法的成功还归功于表征技术的令人难以置信的发展,如扫描隧道/原子力显微镜及相关方法,这些方法允许在原子尺度上进行详细的局部表征。虽然表面辅助合成可以提供具有出色精度的分子纳米结构,达到单个原子的程度,但它受到基于金属表面的限制,而且通常产量有限。因此,将该方法从金属扩展出去并努力提高生产力似乎是更广泛应用的重大挑战。在此,我们展示了通过溶液化学和顺序表面辅助过程相结合,以及通过扫描探针显微镜方法进行详细表征,来生成非平面纳米石墨烯的表面合成方法。

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