N=8 Armchair Graphene Nanoribbons: Solution Synthesis and High Charge Carrier Mobility**

Publication date

2023-11-13

Authors

Yao, Xuelin
Zhang, Heng
Kong, Fanmiao
Hinaut, Antoine
Pawlak, Rémy
Okuno, Masanari
Graf, Robert
Horton, Peter N.
Coles, Simon J.
Meyer, Ernst

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Structurally defined graphene nanoribbons (GNRs) have emerged as promising candidates for nanoelectronic devices. Low band gap (<1 eV) GNRs are particularly important when considering the Schottky barrier in device performance. Here, we demonstrate the first solution synthesis of 8-AGNRs through a carefully designed arylated polynaphthalene precursor. The efficiency of the oxidative cyclodehydrogenation of the tailor-made polymer precursor into 8-AGNRs was validated by FT-IR, Raman, and UV/Vis-near-infrared (NIR) absorption spectroscopy, and further supported by the synthesis of naphtho[1,2,3,4-ghi]perylene derivatives (1 and 2) as subunits of 8-AGNR, with a width of 0.86 nm as suggested by the X-ray single crystal analysis. Low-temperature scanning tunneling microscopy (STM) and solid-state NMR analyses provided further structural support for 8-AGNR. The resulting 8-AGNR exhibited a remarkable NIR absorption extending up to ∼2400 nm, corresponding to an optical band gap as low as ∼0.52 eV. Moreover, optical-pump TeraHertz-probe spectroscopy revealed charge-carrier mobility in the dc limit of ∼270 cm2 V−1 s−1 for the 8-AGNR.

Keywords

Carbon Materials, Graphene Nanoribbons, High Charge Carrier Mobility, Low Bandgap, Time-Resolved Spectroscopy, Catalysis, General Chemistry

Citation

Yao, X, Zhang, H, Kong, F, Hinaut, A, Pawlak, R, Okuno, M, Graf, R, Horton, P N, Coles, S J, Meyer, E, Bogani, L, Bonn, M, Wang, H I, Müllen, K & Narita, A 2023, 'N=8 Armchair Graphene Nanoribbons : Solution Synthesis and High Charge Carrier Mobility**', Angewandte Chemie - International Edition, vol. 62, no. 46, e202312610, pp. 1-7. https://doi.org/10.1002/anie.202312610