Examples of thermally induced charge compensation in photoelectron spectroscopy of insulators
Abstract
The electrical charging of insulating samples is a common problem in photoelectron spectroscopy. Although heating has been suggested as a way to minimize surface charging, systematic studies of this are scarce. We have found that during 8 keV photoelectron spectroscopy using a synchrotron, the extent of charging of three highly insulating materials could be significantly reduced with increasing temperature. The charging of glass and LiNbO3 samples could be almost completely compensated at a moderate temperature of ∼400 °C. Based on the temperature dependence of charging-induced binding energy shift, the activation energies of the charge compensation were evaluated to be about 0.73, 0.65, and 0.21 eV for a glass slide, cover glass, and LiNbO3, respectively. Furthermore, charge compensation was achieved by surface conduction rather than bulk conduction.
Article Details
Journal Info
Journal of Applied Physics
American Institute of Physics
Authors (3)
Daisuke Fujiki
Laboratory of Advanced Science and Technology for Industry, University of Hyogo 1 , Kamigori, Ako, Hyogo 678-1205,
Hirosuke Sumida
Mazda Motor Corporation 2 , 3-1, Shinchi, Fuchu, Aki, Hiroshima 730-8670,
Satoru Suzuki