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Complete Online Lecture Courses

There are a number of excellent surface science lecture courses available on the web covering a wide range of levels from introductory to graduate level and each emphasising different aspects of the subject. Some of the best are:-

An Introduction to surface Chemistry
Dr. Roger Nix, Department of Chemistry, Queen Mary & Westfield College, University of London, UK
Lecture Notes on Surfaces and Thin Films
John Venables, Arizona State University, USA
Introduction to Surface Analysis CEM924
Simon Garrett, Michigan State University
Surfaces and Contact Mechanics
David T. Marx, Center for Advanced Friction Studies, Southern Illinois University, USA
Surface Analysis 729
Dan Thomas, Department of Chemistry and Biochemistry, University of Guelph , Canada.
Chemistry 448, Surface Chemistry
Prof. David Allara, Materials Research Institute, Pennsylvania State University
MTS723, Electron Spectroscopies for Surface Characterisation
J. J. Weimer, Chemistry/Chemical & Materials Engineering, University of Alabama in Huntsville

--------------------------------------------------------------------------------

Lecture Courses Arranged by Topic

For best results try out the courses above to find the one that suits you best. Alternatively, if you are looking for something more specific, try the index of available tutorials below, this is divided into the following sections:-

An Introduction to Surfaces
Studying Surfaces
Surface Structures and Reconstructions
Adsorption, Desorption, Bonding, Catalysis and Growth Processes
The Electronic and Magnetic Structure of Surfaces
Electron-Surface Interactions
Atom/ion surface interactions
Surface Microscopy

--------------------------------------------------------------------------------

Detailed Index of Online Tutorials


--------------------------------------------------------------------------------



An Introduction to Surfaces

What is a surface?
The energetics and thermodynamics of creating a surface
An introduction to surface physics
Surface energies and the Wulff Theorem

--------------------------------------------------------------------------------



Studying Surfaces

What is UHV?
Why do we need UHV to study surfaces? - The kinetic theory of gases.
Discussion 1
Discussion 2
Discussion 3 (pdf)
Principles of vacuum technology
An introduction to vacuum concepts
An introduction to standard vacuum hardware components
Discussion 1 (pdf)
Discussion 2
Discussion 3
Basic Vacuum system design,
Discussion 1
Discussion 2 (pdf)
Discussion 3 (pdf)
Materials to use (1,2) and ones not to use. in a vacuum system
Pumping theory
Comparison of different types of pumps
Discussion 1 (pdf)
Discussion 2 (pdf)
Discussion 3
Measurement of vacuum pressure
Discussion 1 (pdf)
Discussion 2 (pdf)
Preparing a clean surface
Discussion 1 (pdf)
Discussion

--------------------------------------------------------------------------------



Surface Structures and Reconstructions

An introduction to lattice concepts
Discussion 1 (pdf)
Discussion 2
An introduction to 3D crystal structures
Discussion 1 (pdf)
Discussion 2
Discussion 3 (pdf)
An introduction to 2D surface structures
Discussion 1 (pdf)
Discussion 2
Discussion 3 (pdf)
Specific types of surface (pdf)
fcc surfaces
hcp surfaces
bcc surfaces
stepped surfaces (pdf)
and a discussion of their relative energetics
How the 3D structure is altered (by relaxation and re-construction) by the creation of a surface
Discussion 1 (pdf)
Discussion 2
More on surface re-constructions
Bulk and surface defects
Discussion 1
Discussion 2
More complex surface structures such as terraces
And their energetics
Surface Structure (including notation, relaxation, reconstruction, stability, growth mechanisms, adsorption, desorption and experimental probes of surface structure such as LEED and RHEED)
The structure of semi-conductor surfaces
The surface structures of very small metal particles
Introductions to LEED (see also the techniques section)
Discussion 1
Discussion 2 (pdf)
Introduction to RHEED (see also the techniques section)
Discussion 1
Discussion 2

--------------------------------------------------------------------------------



Adsorption, Desorption, Bonding, Catalysis and Growth Processes

1. Adsorption mechanisms and kinetics

Chemisorption v. physisorption
Discussion 1
Discussion 2
The kinetics of adsorption
Potential energy curves and adsorption energetics
Discussion 1
Discussion 2 (pdf)
Adsorption mechanisms and kinetics for low coverages
Langmuir Isotherms
An introduction to Langmuir isotherms
Derivation of langmuir isotherms from equilibrium considerations
Derivation of Langmuir Isotherms from kinetic considerations
Variation of surface coverage with temperature and pressure
Adsorbate phase diagrams and phase transitions
2. The structure of adsorbate layers

Surface Structure (including notation, relaxation, reconstruction, stability, growth mechanisms, adsorption, desorption and experimental probes of surface structure such as LEED and RHEED)
Adsorbate Structure Notoation (Woods Notation and Matrix Notation) (pdf)
Adsorbate induced reconstruction (pdf)
Adsorbate overlayer geometries
Adsorbate - Adsorbate Interactions (pdf)
Surface Diffusion (pdf)
Classification of overlayer structures
Worked examples in overlayer structure characterisation
3. Growth processes

Vapour pressure and the thermodynamics of crystal growth
Surface processes in epitaxial growth
Atomistic models and rate equations
Studying growth processes experimentally
4. Vibrational spectroscopy

An introduction to vibrational spectroscopy
Discussion 1
Discussion 2 (pdf)
An introduction to EELS
Discussion 1
Discussion 2 (pdf)
5. Catalysis

Kinetic of catalytic reactions
6. Desorption

An introduction to desorption
An introduction to the theory and practice of electron stimulated desorption
An introduction to temperature programmed desorption
Discussion 1
Discussion 2 (pdf

--------------------------------------------------------------------------------



The Electronic and Magnetic Structure of Surfaces

An introduction to band theory
(Part 1, part 2, part 3)
An introduction to phonons
Free electron theories and the work function
The Electronic Structure of Semiconductor surfaces
Semiconductor surface
The structure of semiconductor surfaces
Metals and oxides in contact with semiconductors
Semiconductor junctions and devices - Schottky barriers and band offsets (.doc)
Electron emission processes
Magnetic processes at surfaces

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