ISM Chimie Théorique et Modélisation
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Theoretical Chemistry & Modeling Group (THEO)

The group has a longstanding experience in statistical mechanical simulations of condensed matter, quantum chemistry, and other methods of theoretical and computational chemistry. This expertise allows to cover a wide field of activities, ranging from the study of elementary chemical reactions to supramolecular chemistry and simulations of condensed phases. In addition, the group manages and runs a computer center ( "Pôle Modélisation") to bring together the theoreticians and experimentalists of the institute and coordinates the QuantumChemPhys transborder joint laboratory.

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Collaborations

Austria, UK, Poland, Hungary, Spain, Switzerland, Sweden, Belgium, Italy, Cuba, Chile, Ecuador, Argentina, Australia, USA, Japan/p>

THEO

En chiffres

6

Chercheur(s)

7

Enseignant-chercheur(s)

2

ITA/BIATSS(s)

4

Post-doctorant(s)

7

Doctorant(s)

THEO

En images

  • ISM THEO Chimie Théorique
  • ISM THEO Chimie Théorique
  • ISM THEO Chimie Théorique
  • ISM THEO Chimie Théorique
  • ISM THEO Chimie Théorique
  • ISM THEO Chimie Théorique
  • ISM THEO Chimie Théorique
  • ISM THEO Chimie Théorique
  • ISM THEO Chimie Théorique
  • ISM THEO Chimie Théorique

THEO

Membres du groupe

Permanent

Les publications récentes du groupe

Voir toutes les publications du groupe
Fournier, T., Crespos, C., Arshad, I., Dubois, M., Lassagne, B., Monthioux, M., Piazza, F., Puech, P. (). Quantifying the sp3/sp2 ratio in functionalized graphene. In Carbon (Vol. 244, p. 120657). https://doi.org/10.1016/j.carbon.2025.120657
Viaud, L.T., Somers, M., Crespos, C., Bonnet, L., Larregaray, P. (). Classical dynamics in a quantum spirit: Refining semi-classical corrections for the scattering of H2 on W(100). In Journal of Chemical Physics (Vol. 163, Issue 5). https://doi.org/10.1063/5.0272407
Fournier, T., Masaoudi, S.E., Gerber, I.C., Lassagne, B., Crespos, C., Leyssale, J.M., Cruz, K., Paredes, G., Andriambelaza, F., Monthioux, M., Puech, P., Piazza, F. (). Hydrogenation and etching of single-layer graphene during exposure to atomic hydrogen. In Carbon Trends (Vol. 20, p. 100553). https://doi.org/10.1016/j.cartre.2025.100553

THEO

Mots-clés

  • Phase gazeuse
  • Chimie hétérogène
  • Chimie supramoléculaire
  • Phases condensées