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

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 [n]triangulenes (n ϵ $\mathbb{N}$). 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, E g,exp ~ 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.

37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CH↗

Materials Data on AuC by Materials Project

AuC is Tungsten Carbide structured and crystallizes in the hexagonal P-6m2 space group. The structure is three-dimensional. Au2+ is bonded to six equivalent C2- atoms to form a mixture of distorted edge, face, and corner-sharing AuC6 pentagonal pyramids. All Au–C bond lengths are 2.38 Å. C2- is bonded to six equivalent Au2+ atoms to form a mixture of distorted edge, face, and corner-sharing CAu6 pentagonal pyramids.

36 MATERIALS SCIENCE↗

Materials Data on AuC by Materials Project

AuC is Wurtzite structured and crystallizes in the hexagonal P6_3mc space group. The structure is three-dimensional. Au2+ is bonded to four equivalent C2- atoms to form corner-sharing AuC4 tetrahedra. All Au–C bond lengths are 2.14 Å. C2- is bonded to four equivalent Au2+ atoms to form corner-sharing CAu4 tetrahedra.

36 MATERIALS SCIENCE↗