Graphene nanoribbons (GNRs), low-dimensional platforms for carbon-based electronics, show the promising perspective to also incorporate spin polarization in their conjugated electron system. However, magnetism in GNRs is generally associated with localized states around zigzag edges, difficult to fabricate and with high reactivity. Here we demonstrate that magnetism can also be induced away from physical GNR zigzag edges through atomically precise engineering topological defects in its interior. A pair of substitutional boron atoms inserted in the carbon backbone breaks the conjugation of their topological bands and builds two spin-polarized boundary states around them. The spin state was detected in electrical transport measurements throug...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
Journal ArticleWe investigate the effect of edge defects (vacancies) and impurities (substitutional ...
We unveil the nature of the structural disorder in bottom-up zigzag graphene nanoribbons along with ...
OPEN DATA related to the research publication: Niklas Friedrich, Pedro Brandimarte, Jingcheng Li, S...
Spin-hosting graphene nanostructures are promising metal-free systems for elementary quantum spintro...
Funding Information: This work was supported in part by Japan Society for the Promotion of Science (...
Funding Information: This work was supported in part by Japan Society for the Promotion of Science (...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
金沢大学理工研究域数物科学系Although the zigzag graphene nanoribbon attracts scientific interest because of its ma...
[[abstract]]Due to the weak spin-orbit interaction and the peculiar relativistic dispersion in graph...
High-quality graphene nanoribbons (GNRs) grown by on-surface synthesis strategies with atomic precis...
We have used density functional theory calculations to demonstrate that the presence of unsaturated ...
We extensively characterize the electronic structure of ultranarrow graphene nanoribbons (GNRs) with...
Zigzag-edged graphene nanoribbons are antiferromagnetic in cross-edge coupling and unsuitable for sp...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
Journal ArticleWe investigate the effect of edge defects (vacancies) and impurities (substitutional ...
We unveil the nature of the structural disorder in bottom-up zigzag graphene nanoribbons along with ...
OPEN DATA related to the research publication: Niklas Friedrich, Pedro Brandimarte, Jingcheng Li, S...
Spin-hosting graphene nanostructures are promising metal-free systems for elementary quantum spintro...
Funding Information: This work was supported in part by Japan Society for the Promotion of Science (...
Funding Information: This work was supported in part by Japan Society for the Promotion of Science (...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
金沢大学理工研究域数物科学系Although the zigzag graphene nanoribbon attracts scientific interest because of its ma...
[[abstract]]Due to the weak spin-orbit interaction and the peculiar relativistic dispersion in graph...
High-quality graphene nanoribbons (GNRs) grown by on-surface synthesis strategies with atomic precis...
We have used density functional theory calculations to demonstrate that the presence of unsaturated ...
We extensively characterize the electronic structure of ultranarrow graphene nanoribbons (GNRs) with...
Zigzag-edged graphene nanoribbons are antiferromagnetic in cross-edge coupling and unsuitable for sp...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
Journal ArticleWe investigate the effect of edge defects (vacancies) and impurities (substitutional ...
We unveil the nature of the structural disorder in bottom-up zigzag graphene nanoribbons along with ...