Surfactants, Adsorption, Surface Spectroscopy and Disperse by B. Lindmann, G. Olofsson, P. Stenius

By B. Lindmann, G. Olofsson, P. Stenius

The current quantity of development in Colloid and Polymer technology includes papers provided on the eighth Scandinavian Symposium on floor Chemistry which used to be held on the college of Lund, Sweden, on June 4-6, 1984.The Symposium used to be attended through approximately a hundred and sixty scientists, of whom greater than 50 represented the commercial neighborhood. The 50 non-Nordic individuals gave the Symposium a global personality. this system consisted of six plenary lectures, 21 oral and 38 poster displays.

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Extra resources for Surfactants, Adsorption, Surface Spectroscopy and Disperse Systems (Progress in Colloid and Polymer Science)

Sample text

An epitaxial relationship seems to be prevalent for metals growing on metal surfaces, that is, the adsorbate interatomic distance seems to mimic the substrate interatomic distance. For example gold, which has a five percent larger interatomic distance than platinum, adapts to the platinum interatomic distance when deposited on (110) single crystal surfaces [12]. Generally, atomic adsorbates seem to covalently bond and sit in high symmetry sites on low Miller index, flat surfaces. This is shown in figure 14, where the atomic distances obtained for adsorbed atoms on single crystal surfaces are compared with atomic distances for solid compounds or for gas phase molecules.

Ljosland Department of Chemistry University of Bergen N-5000 Bergen (Norway) Progress in Colloid & Polymer Science Progr Colloid & PolymerSci 70:38- 56 (1985) The structure of adsorbed monolayers. The surface chemical bond G. A. Somorjai and B. E. ) A bstract: Results from new electron and ion spectroscopies with surface sensitivities of less than 1°7o of a monolayer have greatly increased our knowledge of structure and bonding at the solid-vacuum interface. We present here a casehistory of some of the major conclusions of these surface structural studies.

Corti M, Degiorgio V (1981) J Phys Chem 85:711 19. Dill K, Flory PJ (1981) Proc Natl Acad Sci, USA 78:676 20. Fromherz P (1981) Chem Phys Lett 77:460 21. Briggs J, Dorshow RB, Bunton CA, Nicoli DF (1982) J Chem Phys 76:775 22a. Chattoraj DK, Birdi KS, Dalsager SU (1982) In: Mittal KL, Fendler EJ (eds) Solution Behavior of Surfactants. Plenum Press, New York 22b. Birdi KS, Stenby EH, Chattoraj DK (1983) In: Mittal KL, Lindman B (eds) Surfactants in Solution, Vol 2. Plenum Press, New York, pp 745-754 29 23.

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