Electric dipole moments and static first order hyperpolarizabilities of two push–pull molecules with an extended p-electron systems have been evaluated at different computational levels and compared with the results of electro-optical absorption measurements, based on the two state model. Calculations show that: (i) the dipole moments of such elongated systems depend significantly on conformation, a thorough conformational search is necessary for a meaningful comparison between theoretical and experimental results; (ii) DFT methods, in particular CAM-B3LYP and M05-2X, yield dipole moments which compare well with those obtained by post Hartree–Fock methods (MP2) and by EOA measurements; (iii) theoretical first order hyperpolarizabilities are largely underestimated, both by MP2 and DFT methods, possibly because of the failure of two state model used in electro-optical measurements.

Molecular hyperpolarizabilities of push-pull chromophores: A comparison between theoretical and experimental results / A., Capobianco; Centore, Roberto; C., Noce; A., Peluso. - In: CHEMICAL PHYSICS. - ISSN 0301-0104. - STAMPA. - 411:(2013), pp. 11-16. [10.1016/j.chemphys.2012.11.019]

Molecular hyperpolarizabilities of push-pull chromophores: A comparison between theoretical and experimental results

CENTORE, ROBERTO;
2013

Abstract

Electric dipole moments and static first order hyperpolarizabilities of two push–pull molecules with an extended p-electron systems have been evaluated at different computational levels and compared with the results of electro-optical absorption measurements, based on the two state model. Calculations show that: (i) the dipole moments of such elongated systems depend significantly on conformation, a thorough conformational search is necessary for a meaningful comparison between theoretical and experimental results; (ii) DFT methods, in particular CAM-B3LYP and M05-2X, yield dipole moments which compare well with those obtained by post Hartree–Fock methods (MP2) and by EOA measurements; (iii) theoretical first order hyperpolarizabilities are largely underestimated, both by MP2 and DFT methods, possibly because of the failure of two state model used in electro-optical measurements.
2013
Molecular hyperpolarizabilities of push-pull chromophores: A comparison between theoretical and experimental results / A., Capobianco; Centore, Roberto; C., Noce; A., Peluso. - In: CHEMICAL PHYSICS. - ISSN 0301-0104. - STAMPA. - 411:(2013), pp. 11-16. [10.1016/j.chemphys.2012.11.019]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/535652
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