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双连接一维并五苯梯形聚合物的表面合成

On-surface synthesis of doubly-linked one-dimensional pentacene ladder polymers.

作者信息

Biswas Kalyan, Urgel José I, Sánchez-Grande Ana, Edalatmanesh Shayan, Santos José, Cirera Borja, Mutombo Pingo, Lauwaet Koen, Miranda Rodolfo, Jelínek Pavel, Martín Nazario, Écija David

机构信息

IMDEA Nanoscience, C/Faraday 9, Campus de Cantoblanco, 28049 Madrid, Spain.

出版信息

Chem Commun (Camb). 2020 Dec 18;56(97):15309-15312. doi: 10.1039/d0cc06865a. Epub 2020 Nov 17.

DOI:10.1039/d0cc06865a
PMID:33200161
Abstract

On-surface synthesis has recently become an essential approach toward the formation of carbon-based nanostructures. Special emphasis is set on the synthesis of π-conjugated polymers taking into consideration their relevance and potential in organic electronics, optoelectronics and spintronics. Here, we report the on-surface synthesis of conjugated ladder polymers consisting of pentacene units doubly-linked via ethynylene-like bonds on the Au(111) surface under ultra-high vacuum conditions. To this aim, we have sublimed pentacene-like precursors equipped with four :CBr functional groups to steer the desired reaction upon annealing on the surface. The atomically precise structure of the obtained polymers has been unambiguously characterized via low-temperature scanning tunneling microscopy and non-contact atomic force microscopy. In addition, scanning tunneling spectroscopy complemented with density-functional theory calculations reveal the narrow bandgap of the polymer. Our results provide potential for the synthesis of π-conjugated polymers with prospects in functional carbon-based nanomaterials that exploit multiple connections between molecular backbones.

摘要

表面合成最近已成为形成碳基纳米结构的一种重要方法。考虑到π共轭聚合物在有机电子学、光电子学和自旋电子学中的相关性和潜力,人们特别强调了它们的合成。在此,我们报告了在超高真空条件下,在Au(111)表面通过类似乙炔键双连接的并五苯单元组成的共轭梯形聚合物的表面合成。为此,我们升华了配备有四个:CBr官能团的类并五苯前体,以在表面退火时引导所需的反应。通过低温扫描隧道显微镜和非接触原子力显微镜对所得聚合物的原子精确结构进行了明确表征。此外,扫描隧道光谱结合密度泛函理论计算揭示了该聚合物的窄带隙。我们的结果为合成具有利用分子主链之间多重连接的功能性碳基纳米材料前景的π共轭聚合物提供了可能性。

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