Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Electronic Properties of Nanopore Edges of Ferromagnetic Graphene Nanomeshes at High Carrier Densities under Ionic-Liquid Gating"
written by Taijyu Hashimoto, Syota Kamikawa, Yuko Yagi, Junji Haruyama,
published by Materials Sciences and Applications, Vol.5 No.1, 2014
has been cited by the following article(s):
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[1] Oxidized few-layer black phosphorus nanomesh magnets
[2] Room-temperature large edge-magnetism in oxidized few-layer black phosphorus nanomeshes
[3] Edge magnetisms and its application in two-dimensional atom-thin layers: Nanomeshes on graphene and black phosphorus
Nanotechnology in Drug Delivery, 2016
[4] Hexagonal boron-nitride nanomesh magnets
AIP Conference Proceedings, 2016
[5] Large edge magnetism in oxidized few-layer black phosphorus nanomesh
2015
[6] Large edge magnetism in oxidized few-layer black phosphorus nanomeshes
Nano Research, 2015
[7] Room-temperature large edge magnetism in oxidized few-layer black phosphorus nanomeshes
2015
[8] Spin-orbit-interaction induced electron spin coherence in slightly hydrogenated graphene within a topological insulating regime
2014
[9] High-efficiency graphene nanomesh magnets realized by controlling mono-hydrogenation of pore edges
Applied Physics Letters, 2014
[10] Spin–orbit-interaction induced electron spin coherence in slightly hydrogenated graphene within a topological insulating regime
J Kamijo, T Nakamura, T Kato, J Haruyama - ee.aoyama.ac.jp, 2014
[11] Spin phase interference correlated to spin–orbit interaction in hydrogenated graphenes
2014
[12] Tunneling magnetoresistance phenomenon utilizing graphene magnet electrode
Applied Physics Letters, 2014
[13] Magnetism and Spintronics in Graphenes: Spin Hall Effect and Edge-Derived Spin Phenomena
Graphene Optoelectronics: Synthesis, Characterization, Properties, and Applications, 2014
[14] Rare-metal Free Tunneling Magnetoresistance Phenomenon Arising From Edge Spins of Magnetic Graphene Nanopore Arrays
Nature Nanotechnology, 2014
[15] Tunneling Magnetoresistance Phenomenon Arising From Edge Spins of Magnetic Graphene Nanopore Array Electrodes
2014
[16] Edge-sensitive Semiconducting Behaviour in Low-defect Narrow Graphene Nanoribbons
Nanomaterials and Nanotechnology, 2014
[17] Magnetism and Spintronics in Graphenes: Spin Hall Effect and Edge‐Derived Spin Phenomena
Graphene Optoelectronics, 2014
[18] Electron-wave dephasing suppressed by spin–orbit interaction in slightly hydrogenated graphene within a topological insulating regime
2014
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