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[3]三角烯石墨烯纳米带的区域选择性表面合成

Regioselective On-Surface Synthesis of [3]Triangulene Graphene Nanoribbons.

作者信息

Daugherty Michael C, Jacobse Peter H, Jiang Jingwei, Jornet-Somoza Joaquim, Dorit Reis, Wang Ziyi, Lu Jiaming, McCurdy Ryan, Tang Weichen, Rubio Angel, Louie Steven G, Crommie Michael F, Fischer Felix R

机构信息

Department of Chemistry, University of California, Berkeley, California 94720, United States.

Department of Physics, University of California, Berkeley, California 94720, United States.

出版信息

J Am Chem Soc. 2024 Jun 12;146(23):15879-15886. doi: 10.1021/jacs.4c02386. Epub 2024 May 30.

Abstract

The integration of low-energy states into bottom-up engineered graphene nanoribbons (GNRs) is a robust strategy for realizing materials with tailored electronic band structure for nanoelectronics. Low-energy zero-modes (ZMs) can be introduced into nanographenes (NGs) by creating an imbalance between the two sublattices of graphene. This phenomenon is exemplified by the family of []triangulenes ( ∈ ). Here, we demonstrate the synthesis of [3]triangulene-GNRs, a regioregular one-dimensional (1D) chain of [3]triangulenes linked by five-membered rings. Hybridization between ZMs on adjacent [3]triangulenes leads to the emergence of a narrow band gap, ∼ 0.7 eV, and topological end states that are experimentally verified using scanning tunneling spectroscopy. Tight-binding and first-principles density functional theory calculations within the local density approximation corroborate our experimental observations. Our synthetic design takes advantage of a selective on-surface head-to-tail coupling of monomer building blocks enabling the regioselective synthesis of [3]triangulene-GNRs. Detailed ab initio theory provides insights into the mechanism of on-surface radical polymerization, revealing the pivotal role of Au-C bond formation/breakage in driving selectivity.

摘要

将低能态整合到底-up 工程化的石墨烯纳米带(GNRs)中是实现具有为纳米电子学量身定制的电子能带结构的材料的一种稳健策略。通过在石墨烯的两个子晶格之间制造不平衡,可以将低能零模(ZMs)引入纳米石墨烯(NGs)中。[]三角烯家族(∈)就是这种现象的例证。在这里,我们展示了[3]三角烯-GNRs 的合成,它是由五元环连接的[3]三角烯的区域规整一维(1D)链。相邻[3]三角烯上的 ZMs 之间的杂化导致出现约 0.7 eV 的窄带隙以及通过扫描隧道光谱实验验证的拓扑端态。在局域密度近似下的紧束缚和第一性原理密度泛函理论计算证实了我们的实验观察结果。我们的合成设计利用了单体构建块的选择性表面头对尾偶联,从而能够区域选择性地合成[3]三角烯-GNRs。详细的从头算理论深入了解了表面自由基聚合的机制,揭示了 Au-C 键形成/断裂在驱动选择性方面的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30d9/11177251/3c5b24a8172e/ja4c02386_0001.jpg

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