Literature DB >> 20886145

Accurate quantum chemical energies for the interaction of hydrocarbons with oxide surfaces: CH(4)/MgO(001).

Sergio Tosoni1, Joachim Sauer.   

Abstract

We examine the adsorption of CH(4) on the MgO(001) surface by a hybrid approach. It combines MP2 calculations with extrapolation to the complete basis set limit for the adsorption site and the CH(4)-CH(4) pair interactions in the adsorbate layer, with DFT+dispersion calculations under periodic boundary conditions for the whole system. To the total binding energy of 10.7 kJ mol(-1), the DFT+D(ispersion) correction contributes 0.7 kJ mol(-1) only, showing that the Mg(9)O(9) two-layer surface model is an excellent choice and that the interaction between the CH(4) molecules in the adsorbate layer is dominated by pair interactions. Contributions due to relaxation of the atom positions of 0.6 kJ mol(-1) (evaluated at DFT+dispersion) and of higher order correlation effects of 2.0 kJ mol(-1) (evaluated by CCSD(T)) yield a final estimate of 13.3 kJ mol(-1). To this total adsorption energy, the lateral interactions between the CH(4) molecules in the adsorbate layer contribute substantially, 4.1 kJ mol(-1)."Observed" desorption energies of 15.3 and 16.0 kJ mol(-1) have been derived from the observed Arrhenius desorption barriers (12.6 and 13.1 kJ mol(-1)) using thermal enthalpy contributions and a substantial zero-point energy (4.2 kJ mol(-1)) calculated from DFT+D vibrational frequencies. The comparison shows that our final hybrid MP2 : PBE+D+ΔCCSD(T) estimate has reached chemical accuracy. It misses 2-3 kJ mol(-1) of binding only, which is most likely due to missing higher order correlation effects.PBE+D(ispersion) itself yields an adsorption energy that agrees within 1 kJ mol(-1) with our final hybrid MP2 : PBE+D+ΔCCSD(T) estimate.

Entities:  

Year:  2010        PMID: 20886145     DOI: 10.1039/c0cp01261k

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  2 in total

1.  Exfoliation Energy of Layered Materials by DFT-D: Beware of Dispersion!

Authors:  Michele Cutini; Lorenzo Maschio; Piero Ugliengo
Journal:  J Chem Theory Comput       Date:  2020-07-17       Impact factor: 6.006

2.  From Crystalline to Amorphous Germania Bilayer Films at the Atomic Scale: Preparation and Characterization.

Authors:  Adrián L Lewandowski; Sergio Tosoni; Leonard Gura; Philomena Schlexer; Patrik Marschalik; Wolf-Dieter Schneider; Markus Heyde; Gianfranco Pacchioni; Hans-Joachim Freund
Journal:  Angew Chem Int Ed Engl       Date:  2019-07-01       Impact factor: 15.336

  2 in total

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