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Dive into the research topics where Bart De Moor is active.

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Featured researches published by Bart De Moor.


Journal of Chemical Theory and Computation | 2011

Normal Mode Analysis in Zeolites: Toward an Efficient Calculation of Adsorption Entropies

Bart De Moor; An Ghysels; Marie-Françoise Reyniers; Veronique Van Speybroeck; Michel Waroquier; Guy Marin

An efficient procedure for normal-mode analysis of extended systems, such as zeolites, is developed and illustrated for the physisorption and chemisorption of n-octane and isobutene in H-ZSM-22 and H-FAU using periodic DFT calculations employing the Vienna Ab Initio Simulation Package. Physisorption and chemisorption entropies resulting from partial Hessian vibrational analysis (PHVA) differ at most 10 J mol(-1) K(-1) from those resulting from full Hessian vibrational analysis, even for PHVA schemes in which only a very limited number of atoms are considered free. To acquire a well-conditioned Hessian, much tighter optimization criteria than commonly used for electronic energy calculations in zeolites are required, i.e., at least an energy cutoff of 400 eV, maximum force of 0.02 eV/Å, and self-consistent field loop convergence criteria of 10(-8) eV. For loosely bonded complexes the mobile adsorbate method is applied, in which frequency contributions originating from translational or rotational motions of the adsorbate are removed from the total partition function and replaced by free translational and/or rotational contributions. The frequencies corresponding with these translational and rotational modes can be selected unambiguously based on a mobile block Hessian-PHVA calculation, allowing the prediction of physisorption entropies within an accuracy of 10-15 J mol(-1) K(-1) as compared to experimental values. The approach presented in this study is useful for studies on other extended catalytic systems.


Journal of Physical Chemistry C | 2011

Adsorption of C2−C8 n -Alkanes in Zeolites †

Bart De Moor; Marie-Françoise Reyniers; Oliver C. Gobin; Johannes A. Lercher; Guy Marin


Physical Chemistry Chemical Physics | 2009

Physisorption and chemisorption of alkanes and alkenes in H-FAU: a combined ab initio–statistical thermodynamics study

Bart De Moor; Marie-Françoise Reyniers; Guy Marin


Journal of Physical Chemistry C | 2008

Physisorption and Chemisorption of Hydrocarbons in H-FAU Using QM-Pot(MP2//B3LYP) Calculations

Bart De Moor; Marie-Françoise Reyniers; Marek Sierka; Joachim Sauer; Guy Marin


Journal of Physical Chemistry C | 2011

Physisorption and chemisorption of linear alkenes in zeolites: a combined QM-Pot(MP2//B3LYP:GULP)–statistical thermodynamics study

Cuong Manh Nguyen; Bart De Moor; Marie-Françoise Reyniers; Guy Marin


Journal of Physical Chemistry C | 2012

Isobutene Protonation in H-FAU, H-MOR, H-ZSM-5, and H-ZSM-22

Cuong Manh Nguyen; Bart De Moor; Marie-Françoise Reyniers; Guy Marin


Archive | 2011

Ab initio study of the adsorption of hydrocarbons in zeolites : influence of molecular structure and framework topology

Bart De Moor


2nd International Workshop (NAPEN - 2011) | 2011

Effect of nanopore dimension and network topology on alkene sorption thermodynamics

Cuong Manh Nguyen; Bart De Moor; Marie-Françoise Reyniers; Guy Marin


9th Netherlands Catalysis and Chemistry Conference (NCCC-IX) | 2008

Physisorption and chemisorption of alkenes: ab initio study of the influence of alkene structure and zeolite topology

Bart De Moor; Marie-Françoise Reyniers; Guy Marin


14th International Congress on Catalysis (ICC14) | 2008

Alkylation of benzene with alkenes in acidic zeolites: an ab initio study

Bart De Moor; Lien Bentein; Marie-Françoise Reyniers; Guy Marin

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Joachim Sauer

Humboldt University of Berlin

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Marek Sierka

Karlsruhe Institute of Technology

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