We studied the magnetic states of fluorine trimers on graphene by using spin-polarized density functional calculations. We considered the absorption of fluorine atoms on one side of the graphene sheet (cis-clusters). Several possible positions of the fluorine atoms were considered to find the most energetically favorable configuration, and its different metastable magnetic states were investigated.Fil: Rivera Julio, Jagger. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Patagonia Norte; Argentina. Comisión Nacional de Energía Atómica. Gerencia del Área Investigaciones y Aplicaciones No Nucleares. Gerencia de Física (CAB). Grupo de Teoría de Sólidos; ArgentinaFil: Hernandez Nieves, Alexand...
The fluorination of mono- and bilayer graphene has been studied by means of ab initio DFT calculatio...
Development of graphene spintronic devices relies on transforming it into a material with a spin ord...
Developing nanostructures with tunable magnetic states is crucial for designing novel data storage a...
We analyze the origin of spin-orbit coupling (SOC) in fluorinated graphene using Density Functional ...
Based on the results of first-principles calculations we demonstrate that significant distortion of ...
We present density functional theory (DFT) calculations of the electronic and magnetic properties of...
We report on theoretical investigations of the spin-orbit coupling effects in fluorinated graphene. ...
peer reviewedWe present density functional theory (DFT) calculations of the electronic and magnetic ...
The basic problem of weak interaction between odd electrons in graphene is considered within the fra...
Spin manipulation is one of the most critical challenges to realize spin-based logic devices and spi...
Abstract Tabby is a pattern of short irregular stripes, usually related to domestic cats. We have pr...
p. 1-8In this work, ab initio density functional theory calculations were performed in order to stud...
Abstract In this thesis, the magnetic resonance and magneto-optical rotation parameters are studied ...
The ternary interaction system composed of fluorinated ethylene carbonate, denoted by EC(F), lithium...
Fluorination was confirmed to be the most effective route to introduce localized spins in graphene. ...
The fluorination of mono- and bilayer graphene has been studied by means of ab initio DFT calculatio...
Development of graphene spintronic devices relies on transforming it into a material with a spin ord...
Developing nanostructures with tunable magnetic states is crucial for designing novel data storage a...
We analyze the origin of spin-orbit coupling (SOC) in fluorinated graphene using Density Functional ...
Based on the results of first-principles calculations we demonstrate that significant distortion of ...
We present density functional theory (DFT) calculations of the electronic and magnetic properties of...
We report on theoretical investigations of the spin-orbit coupling effects in fluorinated graphene. ...
peer reviewedWe present density functional theory (DFT) calculations of the electronic and magnetic ...
The basic problem of weak interaction between odd electrons in graphene is considered within the fra...
Spin manipulation is one of the most critical challenges to realize spin-based logic devices and spi...
Abstract Tabby is a pattern of short irregular stripes, usually related to domestic cats. We have pr...
p. 1-8In this work, ab initio density functional theory calculations were performed in order to stud...
Abstract In this thesis, the magnetic resonance and magneto-optical rotation parameters are studied ...
The ternary interaction system composed of fluorinated ethylene carbonate, denoted by EC(F), lithium...
Fluorination was confirmed to be the most effective route to introduce localized spins in graphene. ...
The fluorination of mono- and bilayer graphene has been studied by means of ab initio DFT calculatio...
Development of graphene spintronic devices relies on transforming it into a material with a spin ord...
Developing nanostructures with tunable magnetic states is crucial for designing novel data storage a...