Based on first-principles total energy calculations, we analyze the dipole energy U = − d centerdot E of a water molecule encapsulated in fullerene isomers from C60 to C80, all of which satisfy the isolated pentagon rule. Our calculations show that the dipole energy exhibits unusual features not expected for an isolated water molecule in vacuum. The dipole energy depends sensitively on the electronic structure of fullerenes and their cage network topology when situated in an external electric field. We also demonstrate that the electrostatic potential inside the fullerene exhibits an anisotropic feature with respect to the applied field
We introduce an efficient quantum fully coupled computational scheme within the multiconfiguration t...
The energetics and electronic structures of large fullerenes included within [n]cycloparaphenylenes ...
We have performed semi-empirical as well as density functional theory calculations in order to analy...
Based on first-principles total energy calculations, we demonstrate that two water molecules encapsu...
Based on first-principles total energy calculations, we analyze the energetics of the fullerene isom...
We report a high-resolution photoelectron imaging study of cryogenically-cooled H2O@C60− and H2O@C59...
Molecular surgery provides the opportunity to study relatively large molecules encapsulated within a...
A water molecule encapsulated inside a C 60 fullerene cage behaves almost like an asymmetric top rot...
We present a fully ab initio, unbiased structure search of the configurational space of decorated C6...
AbstractScientists have found that the size of the cavity of endohedral metallofullerenes (EMFs) can...
Since the recent achievement of Kurotobi and Murata to capture a water molecule in a C60 fullerene (...
The endohedral fullerene H2O@C60 is a supramolecule composed of a single water molecule trapped insi...
Since the recent achievement of Kurotobi and Murata to capture a water molecule in a C60 fullerene (...
Encapsulating a single water molecule inside an endohedral fullerene provides an opportunity for man...
The exohedral reactivity of endohedral fullerene has aroused significant interest because of its pot...
We introduce an efficient quantum fully coupled computational scheme within the multiconfiguration t...
The energetics and electronic structures of large fullerenes included within [n]cycloparaphenylenes ...
We have performed semi-empirical as well as density functional theory calculations in order to analy...
Based on first-principles total energy calculations, we demonstrate that two water molecules encapsu...
Based on first-principles total energy calculations, we analyze the energetics of the fullerene isom...
We report a high-resolution photoelectron imaging study of cryogenically-cooled H2O@C60− and H2O@C59...
Molecular surgery provides the opportunity to study relatively large molecules encapsulated within a...
A water molecule encapsulated inside a C 60 fullerene cage behaves almost like an asymmetric top rot...
We present a fully ab initio, unbiased structure search of the configurational space of decorated C6...
AbstractScientists have found that the size of the cavity of endohedral metallofullerenes (EMFs) can...
Since the recent achievement of Kurotobi and Murata to capture a water molecule in a C60 fullerene (...
The endohedral fullerene H2O@C60 is a supramolecule composed of a single water molecule trapped insi...
Since the recent achievement of Kurotobi and Murata to capture a water molecule in a C60 fullerene (...
Encapsulating a single water molecule inside an endohedral fullerene provides an opportunity for man...
The exohedral reactivity of endohedral fullerene has aroused significant interest because of its pot...
We introduce an efficient quantum fully coupled computational scheme within the multiconfiguration t...
The energetics and electronic structures of large fullerenes included within [n]cycloparaphenylenes ...
We have performed semi-empirical as well as density functional theory calculations in order to analy...