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Electronic properties of on-surface synthesized (4,1,4) chiral graphene nanoribbons

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DataCite Commons2026-03-12 更新2026-05-04 收录
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https://archive.materialscloud.org/doi/10.24435/materialscloud:zd-55
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Chiral graphene nanoribbons offer a versatile playground to control electronic and magnetic prop-erties in a onedimensional graphene nanostructure. In a recent publication, we report on the on-surface synthesis of (4,1,4) chiral graphene nanoribbons (chGNRs) and characterize their structure, edge states and band gaps using scanning probe techniques and DFT simulations, the latter revealing a critical dependence on the environment of the electronic and magnetic properties of (4,1,4)-chGNRs. While gas phase calculations predict an open-shell ground state, the influence of the metallic substrate upon adsorption modifies the electronic properties as predicted by GW calculations. In this theoretical frame, the experimental band gap of surface-supported (4,1,4)-chGNRs can only be reproduced assuming a closed-shell configuration.This record contains data to support the results discussed in our manuscript.
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Materials Cloud
创建时间:
2026-01-09
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