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dc.date.accessioned 2022-07-07T18:34:40Z
dc.date.available 2022-07-07T18:34:40Z
dc.date.issued 1988
dc.identifier.uri http://sedici.unlp.edu.ar/handle/10915/139134
dc.description.abstract Recombination reactions of adsorbed particles on fractal and multifractal media are discussed within the framework of the random walk arguments. Theoretical results, which predict anomalous reaction orderX>2 in the low coverage regime, are checked by means of Monte Carlo simulations on two-dimensional structures and good agreement is found. Thermal desorption experiments on rough surfaces are simulated by studying temperature programmed reactions on fractal percolating clusters. For this case the simulations giveX≅2.5, i. e. the fractal reaction order is greater than the classical one (X=2). The influence of chemisorbed impurities (poison) on the recombination reaction is also studied and the reaction order is found to increase beyondX=2.5 when increasing the concentration of poison. Isothermal (recombination) desorption from energetically heterogeneous surfaces is simulated on two-dimensional substrata with multifractal distributions of activation energy of diffusion. For this caseX (withX>2) depends on the energetic heterogeneity of the substrata (X=2 for an homogeneous substratum). The obtained results point out that the fractal chemical kinetic behaviour is not only restricted to the low concentration regime, but it also covers the medium coverage regime, i.e. it holds for a monolayer surface coverageθ≦0.4 in fractal percolating clusters. en
dc.format.extent 399-407 es
dc.language en es
dc.subject adsorbed particles es
dc.subject fractal media es
dc.subject multifractal media es
dc.subject random walk arguments es
dc.title Study of recombination reactions of particles adsorbed on fractal and multifractal substrata en
dc.type Articulo es
sedici.identifier.other doi:10.1007/bf00615505 es
sedici.identifier.issn 0721-7250 es
sedici.identifier.issn 1432-0630 es
sedici.identifier.issn 1996-0948 es
sedici.identifier.issn 0947-8396 es
sedici.creator.person Albano, Ezequiel Vicente es
sedici.creator.person Mártin, Héctor O. es
sedici.subject.materias Ciencias Exactas es
sedici.subject.materias Física es
sedici.description.fulltext true es
mods.originInfo.place Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas es
sedici.subtype Articulo es
sedici.rights.license Creative Commons Attribution 4.0 International (CC BY 4.0)
sedici.rights.uri http://creativecommons.org/licenses/by/4.0/
sedici.description.peerReview peer-review es
sedici.relation.journalTitle Applied Physics A: Solids and Surface es
sedici.relation.journalVolumeAndIssue vol. 47, no. 4 es


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Creative Commons Attribution 4.0 International (CC BY 4.0) Excepto donde se diga explícitamente, este item se publica bajo la siguiente licencia Creative Commons Attribution 4.0 International (CC BY 4.0)