Electronic Properties and Conformation of$\pi$-Conjugated Molecules with Phenyl and Heterocyclic Group

  • Eunho Oh (Department of Chemistry, Chonbuk National University) ;
  • Kim, Cheol-Ju (Department of Chemistry, Chonbuk National University)
  • Published : 2000.06.01

Abstract

A quantum-chemical investigation on the conformations and electronic properties of trans(diphenyl-diheterocyclic) ethenes(t-PHEs) as building block for fully $\pi$-conjuated polymer are performed in order to display the effects of heterocyclic ring substitution. Structures for the molecules, t-PHEs were fully optimized by using semiempirical AM1, PM3 methods, and ab initio HF methods, with 6-31G basic set. The potential energy curves with respect to the change of single are obtained by using ab initio HF/6-31G basic set. The curves are not similar shapes in the molecules with respect to heterocyclic rings. It is shown that the steric repulsion interactions between phenyl ring and heterocyclic ring are subjected to different type with the respect to each heterocyclic ring. Electronic properties of the molecules were molecules were obtained by applying the optimized structures and selected geometries to the extended Huckel method. To investigate the change of HOMO-LUMO gap with respedt to the torsion angle, we select the optimized structures. By using the results, the dependency of conjugation for the energy gaps is analyzed. For t-PHE the energy gap increase up to 0.52 eV compared with its planar structure. In the cases of t-PHE and t-PHE, the energy gap increase by 1.29 and 1.15 eV, respectively, compared with its planar structure.

Keywords

References

  1. Synth.Metals v.54 Conjugated Polymer Electroluminescence Bradley D.D.D
  2. Angew.Chem.Int.Ed. v.37 Electroluminescent Conjugated Polymers Kraft A;A.C.Grimsdale;A.B.Holmes
  3. Synth.Methals v.111-112 Synthesis of poly(phenylene-alt-thiophene)polymer and characterization of its light emitting properties Song S.Y;H.K.Shim
  4. J.Chem.Phys. v.97 Fine tuning of the band gap in conjugated polymers via control of block copolymer sequences Meyers F;A.J.Heeger;J.L.Bredas
  5. Macromolecules v.28 Spectroscopy and Photophysics of some Olygomers and Polymers Derived from Thiophenes Belletete M;L.Mazerolle;N.Desrosiers;M.Leclere;G.Durocher
  6. Bull.Korean Chem.Soc. v.20 Quantum-chemical Study of Effects of Alkoxy Substitution on the Conformations and Electronic Properties of Poly(p-phenylenevinylene) Hong Sung Y
  7. Macromolecules v.25 Theoretical Study of the Conformations and Electronic Structures of Phenylene-Pyrrole and Phenylene-Furan Copolymers Hong Sung Y;D.S.Marynick
  8. Macromolecules v.33 A novel series of efficient thiophene-based light emitting conjugated polymers and application in polymer light-emitting diodes Peri J;W.L.Yu;W.Hwang;A.J.Heeger
  9. J.Phys.Chem.A v.101 Single-Bond Torsional Potentials in Conjugated Systems: A Comparison of ab initio and Density Functional Results Karpfen A.;C.H.Choi;M.Kertesz
  10. Macromolecules v.30 Fully Conjugated and Soluble Polyazomethines Matsumoto T;F.Yomada;T.Kurosaki
  11. Crystal and Electronic Structure Analysis Using Caesar Ren J;W.Liang;M.W.Whangbo
  12. Geometry Optimization,In Exploring Chemistry with Electronic Structure Methods Foresman J.B;A.Frisch
  13. J.Chem.Phys. v.96 Conformational analysis of Stilbene Derivatives Lhost O;J.L.Bredas
  14. Handbook of Chemistry and Physics(70th Ed.) Weast R.E
  15. Bull.Korean Chem.Soc. v.20 Correlation between Energy Transfer and Phase Separation in Emissive Polymer Blends Han J.H;Y.S.Lee;K.S.Nahm;E.H.Cho;S.B.Ko;C.J.Kim;I.C.Jeon;W.H.Lee;E.K.Suh;Y.H.Lee