The magnetic properties and electronic structure of the ground and excited states of two recently characterized endohedral metallo-fullerenes, [Gd2@C78]- (1) and [Gd2@C80]- (2), have been studied by theoretical methods. The systems can be considered as [Gd2]5+ dimers encapsulated in a fullerene cage with the fifteen unpaired electrons ferromagnetically coupled into an S = 15/2 high-spin configuration in the ground state. The microscopic mechanisms governing the Gd-Gd interactions leading to the ferromagnetic ground state are examined by a combination of density functional and ab initio calculations and the full energy spectrum of the ground and lowest excited states is constructed by means of ab initio model Hamiltonians. The ground state i...
Endohedral fullerenes are perfect nanolaboratories for the study of magnetism. The substitution of a...
We perform total energy calculations on a manganese atom encapsulated inside a C(60) cage using dens...
Using magnetic endohedral fullerenes for molecular spintronics requires control over their encapsula...
The magnetic properties and electronic structure of the ground and excited states of two recently ch...
We theoretically studied the electronic and magnetic properties of the exterior functionalized endoh...
An anisotropic high-spin qubit with long coherence time could scale the quantum system up. It has be...
Endohedral fullerenes, which represent a novel family of carbon nanostructures, are fullerene cages ...
Using magnetic endohedral fullerenes for molecular spintronics requires control over their encapsula...
Endohedral fullerenes, which represent a novel family of carbon nanostructures, are fullerene cages ...
Considering the DySc₂N@C₈₀ system as a prototype for Single Ion Magnets (SIMs) based on endohedral f...
The field of molecular magnetism studies the magnetic properties of molecular systems as opposed to ...
This work describes theoretical studies on molecular and electronic structures of lanthanide-based s...
We synthesized and isolated two paramagnetic metallofullerenes of La@C72 and Y@C72 with different fu...
We have investigated the electronic structure of Gd@C60 using ab initio calculations, photoemission ...
The photoexcitation of functionalized fullerenes to their paramagnetic triplet electronic state can ...
Endohedral fullerenes are perfect nanolaboratories for the study of magnetism. The substitution of a...
We perform total energy calculations on a manganese atom encapsulated inside a C(60) cage using dens...
Using magnetic endohedral fullerenes for molecular spintronics requires control over their encapsula...
The magnetic properties and electronic structure of the ground and excited states of two recently ch...
We theoretically studied the electronic and magnetic properties of the exterior functionalized endoh...
An anisotropic high-spin qubit with long coherence time could scale the quantum system up. It has be...
Endohedral fullerenes, which represent a novel family of carbon nanostructures, are fullerene cages ...
Using magnetic endohedral fullerenes for molecular spintronics requires control over their encapsula...
Endohedral fullerenes, which represent a novel family of carbon nanostructures, are fullerene cages ...
Considering the DySc₂N@C₈₀ system as a prototype for Single Ion Magnets (SIMs) based on endohedral f...
The field of molecular magnetism studies the magnetic properties of molecular systems as opposed to ...
This work describes theoretical studies on molecular and electronic structures of lanthanide-based s...
We synthesized and isolated two paramagnetic metallofullerenes of La@C72 and Y@C72 with different fu...
We have investigated the electronic structure of Gd@C60 using ab initio calculations, photoemission ...
The photoexcitation of functionalized fullerenes to their paramagnetic triplet electronic state can ...
Endohedral fullerenes are perfect nanolaboratories for the study of magnetism. The substitution of a...
We perform total energy calculations on a manganese atom encapsulated inside a C(60) cage using dens...
Using magnetic endohedral fullerenes for molecular spintronics requires control over their encapsula...