Donald S. Bethune, Gerard Meijer, et al.
Chemical Physics Letters
The adsorption of fluorine delivered as xenon difluoride has been examined on a bare diamond C(111)(2 × 1) surface as well as modified surfaces of hydrogen-terminated H(111)(1 × 1) and hydrocarbon-precovered CHx/C(111) by means of Auger electron spectroscopy (AES), X-ray photoelectron spectroscopy (XPS) and low-energy electron diffraction (LEED). The F intake by bare C(111)(2 × 1) at nearly 105 Langmuir of XeF2 exposure reached close to two monolayers on C(111). The adsorbed F was removed by annealing to 1400 K in vacuum, and was replaced by atomic hydrogen generated by a hot filament. The saturation coverage of F on H(111)(1 × 1) was one monolayer. The adsorbed F on H(111)(1 × 1) was removed by annealing to 1300 K and H(111)(1 × 1) was restored. On C(111) precovered with CHx groups, the initial sticking probability of F was definitely smaller than that of C(111)(2 × 1). The adsorbed F was less stable and desorbed completely at 1200 K. The structures of adsorbed F on C(111)(2 × 1) and H(111)(1 × 1) are discussed. © 2000 The Japan Society of Applied Physics.
Donald S. Bethune, Gerard Meijer, et al.
Chemical Physics Letters
Harold F. Winters, Hajime Seki, et al.
Journal of Applied Physics
Mahesh G. Samant, Keiji Kunimatsu, et al.
Journal of Electroanalytical Chemistry
Geoffrey J. Germann, Sidney R. Cohen, et al.
Journal of Applied Physics