Mahesh G. Samant, Keiji Kunimatsu, et al.
Journal of Electroanalytical Chemistry
Triphenylamine neutral and hole (radical cation) molecules are optimized by ab initio Hartree-Fock calculations at the 3-21G basis set. Modest changes in geometry are computed upon oxidation. The unpaired electron is 59% localized on the amine nitrogen atom. The energy barrier for the hopping process involving the electron transfer between a neutral and ionized (hole) triphenylamine is 0.15 eV. The vibrational mode that is primarily associated with the change in geometry upon hole formation is the C-N stretching mode.
Mahesh G. Samant, Keiji Kunimatsu, et al.
Journal of Electroanalytical Chemistry
Robert J. Waltman, A. Diaz, et al.
Journal of Physical Chemistry
Bing K. Yen, Richard L. White, et al.
Journal of Vacuum Science and Technology A: Vacuum, Surfaces and Films
William G. Golden, Keiji Kunimatsu, et al.
Journal of Physical Chemistry