Chem. J. Chinese Universities

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Theoretical Studies on Excited State Proton Transfer Tautomerism Reaction and Spectroscopic Properties of 6-methyl-4-hydroxy Pyrimidine Monomers and Dimers

ZHOU Zi-Yan1,2,3*, ZHAO Ji-Yang2, LIU Min2 , SU Zhong-Min2,3, XIE Yu-Zhong2, WU Xue2   

    1. College of Chemical Engineering,Shandong University of Technology, Zibo 255049, China;
    2. Department of Chemistry, College of Science, Yanbian University, Yanji 133002, China;
    3. Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun 130024, China
  • Received:2006-11-08 Revised:1900-01-01 Online:2007-12-10 Published:2007-12-10
  • Contact: ZHOU Zi-Yan

Abstract: The excited-state intramolecular proton transfer tautomerism reaction of 6-methyl-4-hydroxy pyri-midine monomers and dimmers was investigated by the ab initio method with the self-consistent reaction field(SCRF) with Tomas's polarized continuum mode(PCM) and CIS theories at HF level on the basis of 6-311+G* and 6-31G basis set. By studying the potential energy surface, it was found that the monomer's ground-state proton transfer process together with the excited-state proton transfer process is a molecular system of four energy level, but dimmers were not, which can be used to explain the fact that UV-visible absorption and fluorescence spectra of monomer and dimers all corresponded to quinoid. The UV-visible absorption and fluorescence spectra of 6-methyl-4- hydroxy pyrimidine monomers and dimers under a solvent effect condition were also investigated with hybrid time-dependent density functional theory(TD-DFT) at MPW1PW91 basis set.

Key words: 6-Methyl-4-hydroxy pyrimidine, Excited state, Proton transfer, Spectroscopy

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