A theoretical study of the phosphorescence spectra of sulfur dioxide

碩士 === 國立臺中教育大學 === 科學教育與應用學系碩士班 === 103 === The equilibrium geometries and vibrational frequencies of the singlet ground state (S0) and three triplet excited states (T1, T2 and T3) of sulfur dioxide were computed by using the density-functional theory (B3LYP and M06-2X functionals) and the coupled-...

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Main Authors: LIN KUAN-CHENG, 林冠臣
Other Authors: JHANG,JIA-LIN
Format: Others
Language:zh-TW
Published: 2015
Online Access:http://ndltd.ncl.edu.tw/handle/20697259941039936630
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spelling ndltd-TW-103NTCT01470192017-03-26T04:24:04Z http://ndltd.ncl.edu.tw/handle/20697259941039936630 A theoretical study of the phosphorescence spectra of sulfur dioxide 二氧化硫磷光光譜的理論研究 LIN KUAN-CHENG 林冠臣 碩士 國立臺中教育大學 科學教育與應用學系碩士班 103 The equilibrium geometries and vibrational frequencies of the singlet ground state (S0) and three triplet excited states (T1, T2 and T3) of sulfur dioxide were computed by using the density-functional theory (B3LYP and M06-2X functionals) and the coupled-cluster theory (CCSD(T)) associated with the aug-cc-pVTZ basis set. Franck-Condon factors were computed by using the approach developed by our group, from which the phosphorescence spectra of SO2 were simulated. The adiabatic excitation energies were obtained by extrapolating the CCSD(T) energies to the complete basis set (CBS) limit. The simulated phosphorescence spectra of T1  S0 are in agreement with the experiment. The calculated excitation energies are in excellent agreement with the experimental values, both of which are 3.194 eV. Although there are no experimental phosphorescence spectra of T2 and T3 for comparison, we simulate the spectra and predict that they will show broad and complicated features, with the adiabatic excitation energies 3.259 and 3.457 eV, respectively. JHANG,JIA-LIN 張嘉麟 2015 學位論文 ; thesis 49 zh-TW
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language zh-TW
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description 碩士 === 國立臺中教育大學 === 科學教育與應用學系碩士班 === 103 === The equilibrium geometries and vibrational frequencies of the singlet ground state (S0) and three triplet excited states (T1, T2 and T3) of sulfur dioxide were computed by using the density-functional theory (B3LYP and M06-2X functionals) and the coupled-cluster theory (CCSD(T)) associated with the aug-cc-pVTZ basis set. Franck-Condon factors were computed by using the approach developed by our group, from which the phosphorescence spectra of SO2 were simulated. The adiabatic excitation energies were obtained by extrapolating the CCSD(T) energies to the complete basis set (CBS) limit. The simulated phosphorescence spectra of T1  S0 are in agreement with the experiment. The calculated excitation energies are in excellent agreement with the experimental values, both of which are 3.194 eV. Although there are no experimental phosphorescence spectra of T2 and T3 for comparison, we simulate the spectra and predict that they will show broad and complicated features, with the adiabatic excitation energies 3.259 and 3.457 eV, respectively.
author2 JHANG,JIA-LIN
author_facet JHANG,JIA-LIN
LIN KUAN-CHENG
林冠臣
author LIN KUAN-CHENG
林冠臣
spellingShingle LIN KUAN-CHENG
林冠臣
A theoretical study of the phosphorescence spectra of sulfur dioxide
author_sort LIN KUAN-CHENG
title A theoretical study of the phosphorescence spectra of sulfur dioxide
title_short A theoretical study of the phosphorescence spectra of sulfur dioxide
title_full A theoretical study of the phosphorescence spectra of sulfur dioxide
title_fullStr A theoretical study of the phosphorescence spectra of sulfur dioxide
title_full_unstemmed A theoretical study of the phosphorescence spectra of sulfur dioxide
title_sort theoretical study of the phosphorescence spectra of sulfur dioxide
publishDate 2015
url http://ndltd.ncl.edu.tw/handle/20697259941039936630
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