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Theoretical Study on Electronic and Charge Transfer Properties of Oligo[8]thiophene and Its Circular,Hooped,and Helical Derivatives

Theoretical Study on Electronic and Charge Transfer Properties of Oligo[8]thiophene and Its Circular,Hooped,and Helical Derivatives
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摘要 The novel linear, circular, hooped, and helical molecules based on oligo[8]thio- phene were theoretically studied for the applications of charge transfer devices. To investigate the influence of topology for oligo[8]thiophene derivatives, the geometry structures, frontier molecular orbital (FMO) energies, charge transport properties, and stability property were predicted by density functional theory methods. The calculated results reported herein show that the oligo[8]thiophene derivative with linear structure has smaller energy gap, and fused oligo[8]thiophene derivative with circular structure has the smallest reorganization energy among the designed molecules. We have also studied the stability properties of the designed molecules, and oligo[8]thiophene derivatives are more stable tharJ the fused oligo[8]thiophene derivatives. The novel linear, circular, hooped, and helical molecules based on oligo[8]thio- phene were theoretically studied for the applications of charge transfer devices. To investigate the influence of topology for oligo[8]thiophene derivatives, the geometry structures, frontier molecular orbital (FMO) energies, charge transport properties, and stability property were predicted by density functional theory methods. The calculated results reported herein show that the oligo[8]thiophene derivative with linear structure has smaller energy gap, and fused oligo[8]thiophene derivative with circular structure has the smallest reorganization energy among the designed molecules. We have also studied the stability properties of the designed molecules, and oligo[8]thiophene derivatives are more stable tharJ the fused oligo[8]thiophene derivatives.
出处 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2014年第1期104-114,共11页 结构化学(英文)
基金 Supported by the National Natural Science Foundation of China(No.21302062) the Science Foundation for Young Teachers of Jilin Agricultural University(No.201219)
关键词 thiophene derivatives electronic property charge transport property stability property.. topology oligo[8]thiophene derivatives, electronic property,charge transport property, stability property.., topology
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  • 1Beaujuge, E M.: Reynolds, J. R. Color control in pi-conjugaled organic polymers for use in etectrochromic devices. Chem. Rev. 2010, 110, 268-320.
  • 2Sang-aroon. W.; Laopha, S.; Chaiamomnugool, P,: Tontapha, S,; Saekow, S.; Amomkitbumrung, V. DFT and TDDFT study on the electronic structure and photoelectrochemical properties of dyes derived from cochineal and lac insects as photosensitizer for dye-sensitized solar cells. J. Mol.Model. 2013, 3, 1407-1415.
  • 3Chang, Y.; Lu, Z.; An, L.; Zhang, J. From molecules to materials: molecular and crystal engineering design of organic optoelectronic functional materials for high carrier mobility. J. Phys. Chem. C 2012, 116, 1195-1199.
  • 4Baldo, M. A.; O'Berien, D. F.; You, Y.; Shoustikov, A.; Sibley, S.; Thompson, M. E.; Forrest, S. R. Highly efficient phosphorescent emission from organic electroluminescent devices. Nature 1998, 395,151-154.
  • 5Chen, X. K.; Zou, L. Y.; Huang, S.; Min, C. G; Ren, A. M.; Feng, J. K.; Sun, C. C. Theoretical investigation of charge injection and transport properties of novel organic semiconductor materials-cyclic oligothiophenes. Org. Electron. 2011, 12, 1 198-1210.
  • 6Fichou, D.Ed., Handbook of Oligo- and Polythiophenes. Wiley-VCH, Weinheim 1999.
  • 7Zak, J. K.; Miyasaka, M.; Rajca, S.; Lapkowski, M.; Rajca, A. Radical cation of helical, cross-conjugated β-oligothiophene. J. Am. Chem. Soc. 2010, 132, 3246-3247.
  • 8Garcia, M.; Guadarrama, P.; Fomine, S. Complexes of C60 with cyclic oligothiophenes: a theoretical study. J. Phys. Chem. A 2010, 114, 5406-5413.
  • 9Dong, H.; Hua, S. Ct; Li, S. H. Understanding the role of intra- and intermolecular interactions in the fornaation of single- and double-helical structures of aromatic oligoamides: a computational study. J. Phys. Chem. A 2009, 113, 1335-1342.
  • 10Nakanishi, W.; Yoshioka, T.; Taka, H.; Xue, J. Y.; Kita, H.; lsobe, H. [6]Cyclo-2,7-naphthylene: a redetemaination. Angew. Chem. Int. Ed. 2011, 50, 5323-5326.

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