most citedMagnetism of Fullerene C60 Compared with Graphene Molecule by DFT Calculation, Laboratory Experiment and Astronomical Observation

2 citations · 3 across the 2 of their papers we have counts for

collaborators

5 papers

astro-ph.GA20212 cited

Magnetism of Fullerene C60 Compared with Graphene Molecule by DFT Calculation, Laboratory Experiment and Astronomical Observation

Norio Ota, Aigen Li, Laszlo Nemes +1

Magnetism of fullerene C60 was studied by three methods of the density functional theory (DFT) calculation, laboratory experiment and astronomical observation. DFT revealed that th…

astro-ph.GA2021

Void defect induced magnetism and structure change of carbon material-2, Graphene molecules

Norio Ota, Aigen Li, Laszlo Nemes +1

Void-defect is a possible origin of ferromagnetic feature on pure carbon materials. In our previous paper, void-defect on graphene-nanoribbon show highly polarized spin configurati…

cond-mat.mtrl-sci2021

Void defect induced magnetism and structure change of carbon materials-1, Graphene nano ribbon

Norio Ota, Laszlo Nemes

Void defect is a possible origin of ferromagnetic like feature of pure carbon material. Applying density functional theory to void defect induced graphene nano ribbon (GNR), a deta…

astro-ph.GA2021

Void defect induced magnetism and structure change of carbon material-3, Polycyclic aromatic hydrocarbon

Norio Ota, Aigen Li, Laszlo Nemes

Void-defect induced magnetism of graphene molecule was recently reported in our previous paper of this series study. This paper investigated the case of hydrogenated graphene molec…

astro-ph.GA20201 cited

Graphene Molecules Contributing to the Infrared Bands of Carbon Rich Planetary Nebulae

Norio Ota, Aigen Li, Laszlo Nemes +1

It is well known since 2010 that fullerene C60 is widespread through the interstellar space. Also, it is well known that graphene is a source material for synthesizing fullerene. H…