Unraveling the Influence of Surface Functionalities on Gas Physisorption: A Comprehensive Study on Sba-15 Nanoporous Material from Monte Carlo Simulation for Improved Textural-Energetic Characterization

24 Pages Posted: 23 Jan 2024

See all articles by Rodrigo Delgado Mons

Rodrigo Delgado Mons

affiliation not provided to SSRN

Jhonny Villarroel-Rocha

affiliation not provided to SSRN

Karim Sapag

Universidad Nacional de San Luis - Laboratorio de Sólidos Porosos

Philip LLEWELLYN

Total Energies, Scientific and Technical Center

Jean Rouquerol

Aix-Marseille University

Juan Toso

affiliation not provided to SSRN

Valeria Cornette

affiliation not provided to SSRN

Raúl López

affiliation not provided to SSRN

Abstract

In this study, we conducted experimental and Monte Carlo simulation studies in the grand canonical ensemble (GCMC) to investigate the role of molecular orientation and surface heterogeneity on the adsorption of N2 at 77 K. Our research focused on a series of ordered nanoporous materials (SBA-15) with varying degrees of oxygen functionalities. Specifically, we examined the effects of surface heterogeneity on the calculation of pore size distribution (PSD) and the Brunauer-Emmett-Teller (BET) area of porous materials. To provide a comprehensive perspective, we compared our results with three levels of surface oxidation, including a pristine case without any surface oxidation. The results from both our experimental and simulation data reveal the importance of chemical heterogeneity in determining equilibrium properties such as molecular packing within the pores, differential enthalpies of adsorption, and N2 orientation distribution. Our findings suggest that accurate characterization of surface heterogeneity is crucial for understanding gas adsorption in nanoporous materials and for developing better models for predicting their performance in various applications. Moreover, our simulations revealed substantial changes in the molecular orientation of adsorbate particles with increasing surface heterogeneity. This insight provides valuable information about the behavior of molecules within the nanoporous materials, further enhancing our understanding of the complex adsorption processes in these systems.

Keywords: AdsorptionMonte Carlo SimulationNanomaterialsDifferential Adsorption Enthalpy

Suggested Citation

Delgado Mons, Rodrigo and Villarroel-Rocha, Jhonny and Sapag, Karim and LLEWELLYN, Philip and Rouquerol, Jean and Toso, Juan and Cornette, Valeria and López, Raúl, Unraveling the Influence of Surface Functionalities on Gas Physisorption: A Comprehensive Study on Sba-15 Nanoporous Material from Monte Carlo Simulation for Improved Textural-Energetic Characterization. Available at SSRN: https://ssrn.com/abstract=4703489 or http://dx.doi.org/10.2139/ssrn.4703489

Rodrigo Delgado Mons

affiliation not provided to SSRN ( email )

Jhonny Villarroel-Rocha

affiliation not provided to SSRN ( email )

Karim Sapag

Universidad Nacional de San Luis - Laboratorio de Sólidos Porosos ( email )

San Luis
Argentina

Philip LLEWELLYN

Total Energies, Scientific and Technical Center

Jean Rouquerol

Aix-Marseille University ( email )

3 Avenue Robert Schuman
3 Avenue Robert Schuman,
Aix-en-Provence, 13628
France

Juan Toso

affiliation not provided to SSRN ( email )

Valeria Cornette (Contact Author)

affiliation not provided to SSRN ( email )

Raúl López

affiliation not provided to SSRN ( email )

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