Published 1992 | Version v1
Miscellaneous

Structural and vibrational studies of clean and chemisorbed metal surfaces

Description

Using Medium Energy Ion Scattering, we have studied the structural and vibrational properties of a number of clean and chemisorbed metal surfaces. The work presented in this thesis is mainly of a fundamental nature. However, it is believed that an atomistic understanding of the forces that affect surface structural and vibrational properties can have a beneficial impact on a large number of areas of applied nature. We find that the surface structure of Cu(001) follows the common trend for metal surfaces, where a small oscillatory relaxation exists beginning with a slight contraction in the top layer. In addition, the surface vibrational amplitude is enhanced (as s usually the case) by ∼80%. A detailed analysis of our data shows an unexpected anisotropy of the vibrational amplitude, such that the out-of-plane vibrational amplitude is 30% smaller than the in-plane vibrational amplitude. The unexpected results may imply a large tensile stress on Cu(001). Upon adsorption of 1/4 of a monolayer of S, a p(2 x 2)-S/Cu(001) surface is created. This submonolayer amount of S atoms makes the surface bulk-like, in which the anisotropy of the surface vibrations is removed and the first interlayer contraction is lifted. By comparing our model to earlier contradictory results on this controversial system. We find excellent agreement with a recent LEED study. The presence of 0.1 monolayer of Ca atoms on the Au(113) surface induces a drastic atomic rearrangements, in which half of the top layer Au atoms are missing and a (1 x 2) symmetry results. In addition, the first interlayer spacing of Au(113) is significantly reduced. Our results are discussed in terms of the energy balance between competing surface electronic charge densities

Availability note (English)

Available from University Microfilms, P.O. Box 1764, Ann Arbor, MI 48106 (United States). Order No. 92-32,924.

Additional details

Publishing Information

Publisher
Rutgers State Univ. of New Jersey.
Imprint Place
New Brunswick, NJ (United States)
Imprint Pagination
176 p.

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
27021180
Subject category
S75: CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY; S36: MATERIALS SCIENCE; S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Thesis, Non-conventional Literature
Descriptors DEI
CALCIUM; CHEMISORPTION; COPPER; GOLD; ION SCATTERING ANALYSIS; SULFUR; SURFACE PROPERTIES; VIBRATIONAL STATES
Descriptors DEC
ALKALINE EARTH METALS; CHEMICAL ANALYSIS; CHEMICAL REACTIONS; ELEMENTS; ENERGY LEVELS; EXCITED STATES; METALS; NONDESTRUCTIVE ANALYSIS; NONMETALS; SEPARATION PROCESSES; SORPTION; TRANSITION ELEMENTS