Abstract: A quantum-chemistry-like methodology developed recently to study molecules solvated in atomic clusters is reviewed, and the results of its application to diatomic molecules immersed in helium clusters are presented and discussed. The methodology is based on treating the atoms of the solvent cluster as the "electrons" and the solvated molecule ("BC") as a structured "nucleus" of the combined solvent-solute system. The "electron"-"electron" and "electron" -"nucleus" interactions are represented by parametrized two-body and ab initio three-body potentials, respectively. The "intranuclear" (intramolecular) energy is mimicked by a parametrized pair potential energy function. The methodology furnishes the wave functions, and thereby it allows for computation of the infrared or Raman spectra of the solvated molecules. The computed spectra are then compared with the measured ones. In agreement with the experimental observations, the computed spectra of the solvated molecule show considerable differences depending on whether the solvent cluster is comprised of pure bosonic (He-4), pure fermionic (He-3), or both bosonic and fermionic helium atoms. The differences in the spectra are explained in terms of the differences in the spin-statistics of the solvent clusters. The bosonic vs fermionic nature of the solvent is also reflected in the selection rules. In the case of a polar molecule, the Q-branch of the spectrum is forbidden when the molecule is solvated in a bosonic cluster, and it becomes allowed when the solvent is a fermionic cluster. (C) 2007 Wiley Periodicals, Inc.

Doped helium clusters analysed through quantum chemistry methods / M. P., de Lara–Castells; R., Prosmiti; D., López–durán; G., Delgado–barrio; P., Villarreal; Gianturco, Francesco Antonio; J., Jellinek. - In: INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY. - ISSN 0020-7608. - STAMPA. - 107:(2007), pp. 2902-2921. (Intervento presentato al convegno 11th European Meeting on Quantum Systems in Chemistry and Physics tenutosi a St Petersburg, RUSSIA nel AUG 20-25, 2006) [10.1002/qua.21446].

Doped helium clusters analysed through quantum chemistry methods

GIANTURCO, Francesco Antonio;
2007

Abstract

Abstract: A quantum-chemistry-like methodology developed recently to study molecules solvated in atomic clusters is reviewed, and the results of its application to diatomic molecules immersed in helium clusters are presented and discussed. The methodology is based on treating the atoms of the solvent cluster as the "electrons" and the solvated molecule ("BC") as a structured "nucleus" of the combined solvent-solute system. The "electron"-"electron" and "electron" -"nucleus" interactions are represented by parametrized two-body and ab initio three-body potentials, respectively. The "intranuclear" (intramolecular) energy is mimicked by a parametrized pair potential energy function. The methodology furnishes the wave functions, and thereby it allows for computation of the infrared or Raman spectra of the solvated molecules. The computed spectra are then compared with the measured ones. In agreement with the experimental observations, the computed spectra of the solvated molecule show considerable differences depending on whether the solvent cluster is comprised of pure bosonic (He-4), pure fermionic (He-3), or both bosonic and fermionic helium atoms. The differences in the spectra are explained in terms of the differences in the spin-statistics of the solvent clusters. The bosonic vs fermionic nature of the solvent is also reflected in the selection rules. In the case of a polar molecule, the Q-branch of the spectrum is forbidden when the molecule is solvated in a bosonic cluster, and it becomes allowed when the solvent is a fermionic cluster. (C) 2007 Wiley Periodicals, Inc.
2007
11th European Meeting on Quantum Systems in Chemistry and Physics
doped helium clusters; quantum chemistry methods; spectral simulations
04 Pubblicazione in atti di convegno::04c Atto di convegno in rivista
Doped helium clusters analysed through quantum chemistry methods / M. P., de Lara–Castells; R., Prosmiti; D., López–durán; G., Delgado–barrio; P., Villarreal; Gianturco, Francesco Antonio; J., Jellinek. - In: INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY. - ISSN 0020-7608. - STAMPA. - 107:(2007), pp. 2902-2921. (Intervento presentato al convegno 11th European Meeting on Quantum Systems in Chemistry and Physics tenutosi a St Petersburg, RUSSIA nel AUG 20-25, 2006) [10.1002/qua.21446].
File allegati a questo prodotto
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/9737
 Attenzione

Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo

Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 14
  • ???jsp.display-item.citation.isi??? 14
social impact