Issue 17, 2025

Thiophene-backbone arcuate graphene nanoribbons: shotgun synthesis and length dependent properties

Abstract

Efficient synthetic methods are urgently needed to produce graphene nanoribbons (GNRs) with diverse structures and functions. Precise control over the topological edges of GNRs is also crucial for achieving diverse molecular topologies and desirable electro-optical properties. This study demonstrates a highly efficient “shotgun” synthesis of thiophene-backbone arcuate GNRs, offering a significant advantage over tedious iterative synthesis. This method utilizes a one-pot, three component Suzuki–Miyaura coupling for the precursor, followed by a Scholl reaction for cyclization. The resulting arcuate GNRs have sulfur atoms embedded in the carbon backbone with a combined armchair, cove, and fjord edge structure. This multi-edge architecture is further modified by high-yield oxidation of the electron-rich sulfur atoms to electron-deficient sulfones, enabling precise regulation of the GNRs' electronic properties. These arcuate GNRs with diverse edge structures, heteroatom doping and precise lengths open exciting avenues for their application in optoelectronic devices.

Graphical abstract: Thiophene-backbone arcuate graphene nanoribbons: shotgun synthesis and length dependent properties

Supplementary files

Article information

Article type
Edge Article
Submitted
10 Dec 2024
Accepted
18 Mar 2025
First published
19 Mar 2025
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2025,16, 7366-7373

Thiophene-backbone arcuate graphene nanoribbons: shotgun synthesis and length dependent properties

R. Zhang, X. Chen, L. Zhu, Y. Huang, Z. Zhai, Q. Wang, L. Wang, T. Wang, W. Wang, K. Ye and Y. Li, Chem. Sci., 2025, 16, 7366 DOI: 10.1039/D4SC08353A

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