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Adsorption energy distribution from the Aranovich-Donohue lattice density functional theory

journal contribution
posted on 2024-11-01, 06:39 authored by Piotr Kowalczyk, H Tanaka, H Kanoh, K Kaneko
We propose a new methodology projected for the estimation of the adsorption energy distribution from the monolayer part of a single nitrogen adsorption isotherm determined at 77 K based on the lattice density functional theory (DFT) via the Aranovich-Donohue formalism. At first sight, the presented approach is computationally more difficult than a classical one. However, it is more flexible and comprehensible. Next, we developed a numerical program and used it for the estimation of the adsorption energy distribution from the experimental data on carbon black samples. The main nitrogen molecule-carbon black surface interaction energy can be estimated as ≈7-8 kJ/mol, but the heterogeneity of the investigated materials differs significantly. Furthermore, we compare the results obtained from the lattice DFT via the Aranovich-Donohue formalism with the solution of the integral equation with the kernel represented by the classical monolayer localized Fowler-Guggenheim isotherm equation. The similarity between these two independent approaches is observed. The proposed methodology can be used for the investigation of the energetic heterogeneity of not only the carbonaceous materials but also the other "flat-surfaced" solids.

History

Journal

Langmuir

Volume

20

Issue

6

Start page

2324

End page

2332

Total pages

9

Publisher

American Chemical Society

Place published

USA

Language

English

Former Identifier

2006014781

Esploro creation date

2020-06-22

Fedora creation date

2010-12-06

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