Effect of adsorption from external environment
News of the Kabardin-Balkar scientific center of RAS, no. 5 (2016), pp. 14-18.

Voir la notice de l'article provenant de la source Math-Net.Ru

The paper presents an analytical calculation of the interaction tip-surface forces in atomic force microscope based on the adsorption of the external environment. For calculations Gibbs equation and various known isotherms of monolayer adsorption were used. The results can make a physically reasonable theoretical basis of the experimental method of adsorption studies by measuring the external environment interaction forces between the probe and the sample surface at an atomic force microscope.
Keywords: atomic force microscope, the interatomic interaction, physical adsorption, Gibbs equation
Mots-clés : adsorption isotherm.
@article{IZKAB_2016_5_a1,
     author = {S.Sh. Rekhviashvili},
     title = {Effect of adsorption from external environment},
     journal = {News of the Kabardin-Balkar scientific center of RAS},
     pages = {14--18},
     publisher = {mathdoc},
     number = {5},
     year = {2016},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/IZKAB_2016_5_a1/}
}
TY  - JOUR
AU  - S.Sh. Rekhviashvili
TI  - Effect of adsorption from external environment
JO  - News of the Kabardin-Balkar scientific center of RAS
PY  - 2016
SP  - 14
EP  - 18
IS  - 5
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/IZKAB_2016_5_a1/
LA  - ru
ID  - IZKAB_2016_5_a1
ER  - 
%0 Journal Article
%A S.Sh. Rekhviashvili
%T Effect of adsorption from external environment
%J News of the Kabardin-Balkar scientific center of RAS
%D 2016
%P 14-18
%N 5
%I mathdoc
%U http://geodesic.mathdoc.fr/item/IZKAB_2016_5_a1/
%G ru
%F IZKAB_2016_5_a1
S.Sh. Rekhviashvili. Effect of adsorption from external environment. News of the Kabardin-Balkar scientific center of RAS, no. 5 (2016), pp. 14-18. http://geodesic.mathdoc.fr/item/IZKAB_2016_5_a1/

[1] S. Sh. Rekhviashvili, “Nekotorye voprosy termodinamiki kontaktnogo vzaimodeistviya v atomno-silovom mikroskope”, ZhTF, 71:10 (2001), 131–134

[2] B. V. Deryagin , N. V. Churaev , V. M. Muller, Poverkhnostnye sily, Nauka, M., 1985, 398 pp.

[3] S. Sh. Rekhviashvili, “Statisticheskaya teoriya treniya pri vzaimodeistvii nanozonda s poverkhnostyu tverdogo tela”, IFZh, 76:4 (2003), 168–170

[4] A. W. Adamson , A. P. Gast, Physical Chemistry of Surfaces, A Wiley-Interscience Publication, New York, 1997, 599-676 pp.

[5] A. P. Chuklanov , S. A. Ziganshina , A. A. Bukharaev, “Izuchenie protsessov desorbtsii na poverkhnosti kremniya s pomoschyu atomno-silovoi spektroskopii”, Materialy XI mezhdunarodnogo simpoziuma «Nanofizika i nanoelektronika», IFM RAN, N. Novgorod, 2007, 518-519

[6] Yu. N. Rabotnov, Mekhanika deformiruemogo tverdogo tela, Nauka, M., 1988, 744 pp.

[7] G. V. Dedkov, “Nanotribologiya: eksperimentalnye fakty i teoreticheskie modeli”, UFN, 170:6 (2000), 585-618 | DOI

[8] G. V. Dedkov , S. Sh. Rekhviashvili, “Nanotrubki i silovye vzaimodeistviya v atomno-silovom mikroskope”, ZhTF, 69:8 (1999), 124-127

[9] G. V. Dedkov , S. Sh. Rekhviashvili, “Adgezionnoe trenie pri kontakte nanotrubok s poverkhnostyu tverdogo tela”, Materialy Vserossiiskogo soveschaniya «Zondovaya mikroskopiya-99», IFM RAN, N. Novgorod, 1999, 152-155

[10] B. A. Rozenberg , R. Tenne, “Polymer-assisted fabrication of nanoparticles and nanocomposites”, Prog. Polym. Sci., 33:1 (2008), 40-112 | DOI

[11] S. Sh. Rekhviashvili, E. V. Kishtikova, “Adsorbtsiya i poverkhnostnaya energiya v eksperimentakh s kvartsevym mikrobalansom”, ZhTF, 78:4 (2008), 137-139