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Structures,stabilities,and IR and ^(13)C-NMR spectra of dihedral fullerenes:A density functional theory study

Structures,stabilities,and IR and ^(13)C-NMR spectra of dihedral fullerenes:A density functional theory study
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摘要 Dihedral fullerenes are thermodynamically stable molecules with Dnd or Dnh symmetry. Based on experimental findings, two series of dihedral fullerenes with five-fold (C5) and six-fold (C6) symmetry have been studied using density functional theory (DFT). The DFT calculations showed that for both series the stabilities increased with increasing fullerene size. Structural analyses indicated that the stabilities are related to specific local geometries. In the case of the more abundant C5 series, the presence of approximately planar pentagons and hexagons on the top bowl favors their formation. That is to say, those fuller- enes with small dihedral angles within the polygons are readily formed, because planar hexagons lead to strengthened conjuga- tion which lowers average bonding energies (ABE) and increases thermodynamic stabilities. Non-planar hexagons at equatorial positions in tube-shaped fullerenes have an adverse effect on the conjugation and inhibit their formation. Calculations also demonstrated that fullerenes in the two series, including C50(D5h), C60(O6h), C80(O5d), C96(D6d), Cllo(D5h), and Cl20(D5d), have thermodynamically stable triplet structures with strong conjugation. The calculated IR and 13C NMR spectra of the fullerenes show some similarities and regular trends due to their homogenous structures. The electronic structures indicate that short dou- ble bonds in hexagons with high electron occupancies are readily attacked by electrophilic agents and can also be coordinated by transition metals. Mechanistic discussions suggested that C2 additions and C2 losses constitute reversible processes at high temperature and C2 additions in pentagonal fusions are crucial to the kinetics of the curvature of structures. C3 additions lead to the formation of large fullerenes of other types. Dihedral fullerenes are thermodynamically stable molecules with D nd or D nh symmetry.Based on experimental findings,two series of dihedral fullerenes with five-fold(C5) and six-fold(C6) symmetry have been studied using density functional theory(DFT).The DFT calculations showed that for both series the stabilities increased with increasing fullerene size.Structural analyses indicated that the stabilities are related to specific local geometries.In the case of the more abundant C5 series,the presence of approximately planar pentagons and hexagons on the top bowl favors their formation.That is to say,those fullerenes with small dihedral angles within the polygons are readily formed,because planar hexagons lead to strengthened conjugation which lowers average bonding energies(ABE) and increases thermodynamic stabilities.Non-planar hexagons at equatorial positions in tube-shaped fullerenes have an adverse effect on the conjugation and inhibit their formation.Calculations also demonstrated that fullerenes in the two series,including C 50(D 5h),C 60(D 6h),C 80(D 5d),C 96(D 6d),C 110(D 5h),and C 120(D 5d),have thermodynamically stable triplet structures with strong conjugation.The calculated IR and 13 C NMR spectra of the fullerenes show some similarities and regular trends due to their homogenous structures.The electronic structures indicate that short double bonds in hexagons with high electron occupancies are readily attacked by electrophilic agents and can also be coordinated by transition metals.Mechanistic discussions suggested that C 2 additions and C 2 losses constitute reversible processes at high temperature and C 2 additions in pentagonal fusions are crucial to the kinetics of the curvature of structures.C 3 additions lead to the formation of large fullerenes of other types.
作者 LI Ping
机构地区 College of Chemistry
出处 《Science China Chemistry》 SCIE EI CAS 2012年第9期1856-1871,共16页 中国科学(化学英文版)
关键词 dihedral fullerene singlet and triplet structures IR and NMR spectra conjugate structure stability 热力学稳定性 密度泛函理论 结构分析 NMR谱 二面角 IR 计算结果 电子结构
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  • 1Fowler PW, Morvan V. Carbon cylinders: A class of closed-shell clusters. J Chem Soc, Faraday Trans, 1990, 86: 2073-2077.
  • 2Tang AC, Huang FQ. Electronic structures of dihedral (D5;? D^, DM) fullerenes. Chem Phys Lett, 1996, 250: 528-536.
  • 3King RB. Some aspects of the symmetry and topology of possible carbon allotrope structures. J Math Chem, 1998, 23: 197-227.
  • 4Prinzbach H, Weiler A, Landenberger P, Wahl F, Worth J, Scott LT, Gelmont M, Olevano D, Issendorff BV. Gas-phase production and photoelectron spectroscopy of the smallest fullerene, C2o- Nature, 2000,407: 60-63.
  • 5Jarrold M. The smallest fullerene. Nature,2000, 407: 26-27.
  • 6Lu J, Re S, Choe YK, Nagase S, Zhou Y, Han RH, Peng LM, Zhang XW, Zhao XG. Theoretical identification of C2o carbon clusters: Prevalence of the monocyclic isomer and existence of the smallest fullerene and bowl isomer. Phys Rev, 2003,B67: 125415.
  • 7An W, Gao Y, Bulusu S, Zeng XC. Ab initio calculation of bowl, cage, and ring isomers of C20 and C20-. J Chem Phys, 2005, 122: 204109.
  • 8An W, Shao N, Bulusu S, Zeng XC. Ab initio calculation of carbon clusters II. Relative stabilities of fullerene and nonfullerene C24. J Chem Phys, 2008, 128: 084301.
  • 9Hawkins JM, Meyer A, Lewis TA, Loren S, Hollander FJ. Crystal structure of osmylated C60: Confirmation of the soccer ball. Science, 1991,252:312-313.
  • 10Fagan PJ, Calabrese JC, Malone B. The chemical nature of buckmin-sterfullerene and the characterization of a platinum derivative. Science, 1991,252: 1160-1161.

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