• Acta Physica Sinica
  • Vol. 69, Issue 1, 013101-1 (2020)
Ya-Sha Li*, Lin-Xiang Sun, Xiao Zhou, Kai Chen, and Hui-Yao Wang
DOI: 10.7498/aps.69.20191455 Cite this Article
Ya-Sha Li, Lin-Xiang Sun, Xiao Zhou, Kai Chen, Hui-Yao Wang. Structure and excitation characteristics of C5F10O under external electric field based on density functional theory [J]. Acta Physica Sinica, 2020, 69(1): 013101-1 Copy Citation Text show less

Abstract

In this paper, we use the density functional theory (B3LYP) method with 6-311g(d) basis sets to optimize the molecular structure of C5F10O and obtain the stable structure of its ground state. On this basis, the geometric characteristics, energy, frontier orbital energy levels, and infrared spectra of C5F10O under the different external electric fields (from 0 to 0.03 a.u., 1 a.u. = 5.142 × 1011 V/m) are studied by the same method. Under the same basis sets, the orbital composition and excitation characteristics of C5F10O are calculated and analyzed by the TD-DFT method. The conclusions show that as the electric field increases, the bond energy of 5C—15F and 4C=16O gradually decrease, their bond lengths increase. The charge of 13F atoms changes fastest, and it is easier to lose electrons under the action of electric field force. The potential energy of the molecule increases, and the stability gradually decreases. The energy gap EG value continuously decreases, and the molecules are more likely to be excited to participate in the chemical reaction. In the infrared spectrum, four absorption peaks are blue-shifted, and four absorption peaks are red-shifted. The excitation characteristics of the first 8 singlet excited states of the C5F10O are identified by the hole-electron analysis method. The excitation energy of the first excited state increases slightly, and the wavelength decreases, and blue shift occurs. The excitation energy values of the other excited states decrease, their wavelengths increase, and red shifts occur. Because the electrons in C5F10O become easier to excite, the stability of the system is lower.
Ya-Sha Li, Lin-Xiang Sun, Xiao Zhou, Kai Chen, Hui-Yao Wang. Structure and excitation characteristics of C5F10O under external electric field based on density functional theory [J]. Acta Physica Sinica, 2020, 69(1): 013101-1
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