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Proximity-Induced Superconductivity in Atomically Precise Nanographene on Ag/Nb(110)

Date Issued
2023-01-01
Author(s)
Liu, Jung-Ching  
Pawlak, Rémy  
Wang, Xing
Chen, Hongyan
D'Astolfo, Philipp  
Drechsel, Carl  
Zhou, Ping
Häner, Robert
Decurtins, Silvio
Aschauer, Ulrich
Liu, Shi-Xia
Wulfhekel, Wulf
Meyer, Ernst  
DOI
10.1021/acsmaterialslett.2c00955
Abstract
Obtaining a robust superconducting state in atomically precise nanographene (NG) structures by proximity to a superconductor could foster the discovery of topological superconductivity in graphene. On-surface synthesis of such NGs has been achieved on noble metals and metal oxides; however, it is still absent on superconductors. Here, we present a synthetic method to induce superconductivity of polymeric chains and NGs adsorbed on the superconducting Nb(110) substrate covered by thin Ag films. Using atomic force microscopy at low temperature, we characterize the chemical structure of each subproduct formed on the superconducting Ag layer. Scanning tunneling spectroscopy further allows us to elucidate the electronic properties of these nanostructures, which consistently show a superconducting gap.
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