The Experts below are selected from a list of 798 Experts worldwide ranked by ideXlab platform
Kazu Suenaga - One of the best experts on this subject based on the ideXlab platform.
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large intrinsic energy bandgaps in Annealed Nanotube derived graphene nanoribbons
Nature Nanotechnology, 2011Co-Authors: T Shimizu, J Haruyama, Daniela C Marcano, D V Kosinkin, James M Tour, K Hirose, Kazu SuenagaAbstract:Graphene nanoribbons manufactured by annealing unzipped carbon Nanotubes have been measured to have a large energy bandgap of ∼50 meV, even for widths of ∼100 nm.
T Shimizu - One of the best experts on this subject based on the ideXlab platform.
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large intrinsic energy bandgaps in Annealed Nanotube derived graphene nanoribbons
Nature Nanotechnology, 2011Co-Authors: T Shimizu, J Haruyama, Daniela C Marcano, D V Kosinkin, James M Tour, K Hirose, Kazu SuenagaAbstract:Graphene nanoribbons manufactured by annealing unzipped carbon Nanotubes have been measured to have a large energy bandgap of ∼50 meV, even for widths of ∼100 nm.
J Haruyama - One of the best experts on this subject based on the ideXlab platform.
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large intrinsic energy bandgaps in Annealed Nanotube derived graphene nanoribbons
Nature Nanotechnology, 2011Co-Authors: T Shimizu, J Haruyama, Daniela C Marcano, D V Kosinkin, James M Tour, K Hirose, Kazu SuenagaAbstract:Graphene nanoribbons manufactured by annealing unzipped carbon Nanotubes have been measured to have a large energy bandgap of ∼50 meV, even for widths of ∼100 nm.
Daniela C Marcano - One of the best experts on this subject based on the ideXlab platform.
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large intrinsic energy bandgaps in Annealed Nanotube derived graphene nanoribbons
Nature Nanotechnology, 2011Co-Authors: T Shimizu, J Haruyama, Daniela C Marcano, D V Kosinkin, James M Tour, K Hirose, Kazu SuenagaAbstract:Graphene nanoribbons manufactured by annealing unzipped carbon Nanotubes have been measured to have a large energy bandgap of ∼50 meV, even for widths of ∼100 nm.
D V Kosinkin - One of the best experts on this subject based on the ideXlab platform.
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large intrinsic energy bandgaps in Annealed Nanotube derived graphene nanoribbons
Nature Nanotechnology, 2011Co-Authors: T Shimizu, J Haruyama, Daniela C Marcano, D V Kosinkin, James M Tour, K Hirose, Kazu SuenagaAbstract:Graphene nanoribbons manufactured by annealing unzipped carbon Nanotubes have been measured to have a large energy bandgap of ∼50 meV, even for widths of ∼100 nm.