Publication Cover
Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 85, 1995 - Issue 2
9
Views
24
CrossRef citations to date
0
Altmetric
Research note

Adsorption of chemically reacting fluids on a crystalline surface

, &
Pages 407-412 | Received 18 Oct 1994, Accepted 20 Dec 1994, Published online: 26 Oct 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

MA GORZATA BOROWKO PAWE BRYK OREST PIZIO STEFAN SOKO OWSKI. (1998) RESEARCH NOTE Fluids in contact with periodic semipermeable walls: an integral equation approach. Molecular Physics 94:5, pages 867-872.
Read now
By CHAD J. SEGURA & WALTER G. CHAPMAN and KESHAWA P. SHUKLA. (1997) Associating fluids with four bonding sites against a hard wall: density functional theory. Molecular Physics 90:5, pages 759-772.
Read now
ANDRIY KOVALENKO, ANDRIJ TROKHYMCHUK, PIZIO OREST & DOUGLAS HENDERSON. (1996) Density profiles of a model of dimerizing hard spheres in contact with a crystalline surface: application of Wertheim's theory of association. Molecular Physics 89:6, pages 1765-1782.
Read now
ANDRIJ TROKHYMCHUK, OREST PIZIO, DOUGLAS HENDERSON & STEFAN SOKOLOWSKI. (1996) Density profiles for a dimerizing hard sphere fluid near an associatively adsorbing hard wall: a Monte Carlo study. Molecular Physics 88:6, pages 1491-1502.
Read now
Orest Pizio, Andrij Trokhymchuk & Stefan Sokołowski. (1995) Density profiles of a double square-well model of a chemically associating fluid near a hard wall. Molecular Physics 86:4, pages 649-664.
Read now
A. Trokhymchuk, O. Pizio, S. Sokołowski & D. Henderson. (1995) Density profiles of chemically reacting fluids in slit-like pores. Molecular Physics 86:1, pages 53-71.
Read now

Articles from other publishers (17)

Dominika O. Wasik, Ana Martín-Calvo, Juan José Gutiérrez-Sevillano, David Dubbeldam, Thijs J.H. Vlugt & Sofía Calero. (2023) Enhancement of formic acid production from carbon dioxide hydrogenation using metal-organic frameworks: Monte Carlo simulation study. Chemical Engineering Journal 467, pages 143432.
Crossref
O. Pizio, S. Sokołowski & V. M. Trejos. (2021) Phase behavior of water-like models in nanoscopic pores of slit shape. Predictions from a density functional theory. Condensed Matter Physics 24:3, pages 33601.
Crossref
I. Matito-Martos, J. García-Reyes, A. Martin-Calvo, D. Dubbeldam & S. Calero. (2019) Improving Ammonia Production Using Zeolites. The Journal of Physical Chemistry C 123:30, pages 18475-18481.
Crossref
Víctor M. Trejos & Jacqueline Quintana-H. (2018) Thermodynamic properties of confined square-well fluids with multiple associating sites. The Journal of Chemical Physics 148:7.
Crossref
Andrzej Patrykiejew, Stefan Sokolowski & Orest Pizio. 2016. Surface and Interface Science. Surface and Interface Science 883 1253 .
Yurko Duda, Roberto Govea-Rueda, Mónica Galicia, Hiram I. Beltrán & Luis S. Zamudio-Rivera. (2005) Corrosion Inhibitors:  Design, Performance, and Computer Simulations. The Journal of Physical Chemistry B 109:47, pages 22674-22684.
Crossref
C. Heath Turner, J. Karl Johnson & Keith E. Gubbins. (2001) Effect of confinement on chemical reaction equilibria: The reactions 2NO⇔(NO)2 and N2+3H2⇔2NH3 in carbon micropores. The Journal of Chemical Physics 114:4, pages 1851-1859.
Crossref
E. Vakarin, Yu. Duda & M.F. Holovko. (1998) Polymers near a solid surface. Fused hard sphere chain model. Journal of Molecular Liquids 75:1, pages 77-95.
Crossref
Youri DudaDouglas HendersonBeatriz Millan-MaloOrest Pizio. (1997) Equilibrium Partitioning of a Dimerizing Fluid Through a Microporous Solid:  A Monte Carlo Study of the Density Distributions and Adsorption Isotherms. The Journal of Physical Chemistry B 101:50, pages 10680-10687.
Crossref
Eduard Vakarin, Yurij Duda & Myroslav Holovko. (1997) Cooperative adsorption of network forming fluids onto crystalline surfaces: Structure and connectivity of the interface. The Journal of Chemical Physics 107:14, pages 5569-5581.
Crossref
CHAD SEGURA, WALTER CHAPMAN & KESHAWA SHUKLA. (1997) Associating fluids with four bonding sites against a hard wall: density functional theory. Molecular Physics 90:5, pages 759-771.
Crossref
Douglas Henderson, Stefan Sokołowski & Orest Pizio. (1997) Models for Site Adsorption of an Associating Fluid on Crystalline Surfaces. Langmuir 13:5, pages 1162-1167.
Crossref
D. Henderson, A. Patrykiejew, O. Pizio & S. Sokołowski. (1996) Adsorption of dimerizing fluids in disordered porous networks. Physica A: Statistical Mechanics and its Applications 233:1-2, pages 67-76.
Crossref
D. Henderson, A. Kovalenko, O. Pizio & S. Solołowski. (1996) Density profiles of a dimerizing fluid in contact with a crystalline surface. Physica A: Statistical Mechanics and its Applications 231:1-3, pages 254-264.
Crossref
Orest Pizio & Stefan Sokołowski. (1996) Model for an associating fluid near an associatively adsorbing crystalline surface. Physical Review E 53:1, pages 820-824.
Crossref
Andrij TrokhymchukOrest PizioDouglas Henderson & Stefan Sokołowski. (1996) Density Profiles for a Model of Localized Site Adsorption of a Dimerizing Fluid on Crystalline Surfaces. Integral Equation Study. The Journal of Physical Chemistry 100:14, pages 5941-5948.
Crossref
D. Henderson, S. Sokol/owski & A. Trokhymchuk. (1995) The nonuniform Percus–Yevick equation for the density profile of associating hard spheres. The Journal of Chemical Physics 103:11, pages 4693-4696.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.