4.4 Article

Density functional study on the electronic properties, polarizabilities, NICS values, and absorption spectra of fluorinated fullerene derivative C60F17CF3

期刊

COMPUTATIONAL AND THEORETICAL CHEMISTRY
卷 991, 期 -, 页码 154-160

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.comptc.2012.04.015

关键词

C-60; C60F18; C60F17CF3; Fullerene; Density functional

资金

  1. Special Foundation of National Natural Science [11104062, 10947132, 11004047]
  2. China Postdoctoral Science Foundation [20100471307]
  3. Jiangsu Planned Projects for Postdostoral Research Funds [1001001C]
  4. Research Starting Foundation of Hohai University [2084/40801130]
  5. Excellent Innovation Personal Support Plan of Hohai University
  6. Fundamental Research Funds for the Central Universities [2012B12914]

向作者/读者索取更多资源

Electronic structures, polarizabilities. NICS values, and absorption spectra of the fluorinated fullerene derivative C60F17CF3 have been systematically studied by density functional theory. The large E-g (2.39 eV) between HOMO and LUMO and the strong aromatic character (with NICS 7.25 ppm) of C60F17CF3 indicate it posses high stability. Further investigations show that C60F17CF3 could be excellent electron acceptors for potential photonic/photovoltaic applications in consequence of its large VIP (8.78 eV). The density of states and frontier molecular orbitals are also calculated, which present that HOMOs and LUMOs are mainly distributed in the tortoise shell subunit of C60F17CF3, and the influence from F and CF3 is secondary. Our calculations shows that the absorption spectra of C60F17CF3 structure is distorted by the F and CF3 addition and the optical gaps of C60F17CF3 is red shifted relative to that of C-60. The attached F and CF3 in C60F17CF3 greatly change the cage and disrupt aromatic rings, which lead to stronger aromatic character of itself than that of C-60. In addition, the static linear polarizability alpha and first-order hyperpolarizability beta(0) for C60F17CF3 are significantly larger than those of C-60 because of its lower symmetric structures and high delocalization of p electrons. (C) 2012 Elsevier B.V. All rights reserved.

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