Spintronics, which manipulate spins but not electron charge, are highly valued as energy and thermal dissipationless systems. A variety of materials are challenging the realization of spintronic devices. Among those, graphene, a carbon mono-atomic layer, is very promising for efficient spin manipulation and the creation of a full spectrum of beyond-CMOS spin-based nano-devices. In the present article, the recent advancements in graphene spintronics are reviewed, introducing the observation of spin coherence and the spin Hall effect. Some research has reported the strong spin coherence of graphene. Avoiding undesirable influences from the substrate are crucial. Magnetism and spintronics arising from graphene edges are reviewed based on my pr...
We investigate, using benzenoid graph theory and first-principles calculations, the magnetic propert...
In this thesis, charge and spin transport experiments on monolayer and few-layer graphene are presen...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.Using magnetic rar...
Copyright © 2014 Taijyu Hashimoto et al. This is an open access article distributed under the Creati...
The science for processing and control of electron spins is referred to as “Spintronics”. Metals, se...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Because of its fascinating electronic properties, graphene is expected to produce breakthroughs in m...
Spintronics is a promising field to meet the future requirements to information technology. The term...
We demonstrate that hexagonal graphene nanoflakes with zigzag edges display quantum interference (QI...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
The development of spintronics devices relies on efficient generation of spin-polarized currents and...
We demonstrate that hexagonal graphene nanoflakes with zigzag edges display quantum interference (QI...
Resumen del trabajo presentado al International workshop On-Surface Synthesis (OSS), celebrado en Sa...
The isolation of graphene has triggered an avalanche of studies into the spin-dependent physical pro...
We investigate, using benzenoid graph theory and first-principles calculations, the magnetic propert...
In this thesis, charge and spin transport experiments on monolayer and few-layer graphene are presen...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.Using magnetic rar...
Copyright © 2014 Taijyu Hashimoto et al. This is an open access article distributed under the Creati...
The science for processing and control of electron spins is referred to as “Spintronics”. Metals, se...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Because of its fascinating electronic properties, graphene is expected to produce breakthroughs in m...
Spintronics is a promising field to meet the future requirements to information technology. The term...
We demonstrate that hexagonal graphene nanoflakes with zigzag edges display quantum interference (QI...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
The development of spintronics devices relies on efficient generation of spin-polarized currents and...
We demonstrate that hexagonal graphene nanoflakes with zigzag edges display quantum interference (QI...
Resumen del trabajo presentado al International workshop On-Surface Synthesis (OSS), celebrado en Sa...
The isolation of graphene has triggered an avalanche of studies into the spin-dependent physical pro...
We investigate, using benzenoid graph theory and first-principles calculations, the magnetic propert...
In this thesis, charge and spin transport experiments on monolayer and few-layer graphene are presen...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.Using magnetic rar...