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Insights in the behaviour of metal-organic frameworks through molecular modeling : from force field derivation to thermodynamic analysis

(2015)
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Citation

Please use this url to cite or link to this publication:

MLA
Vanduyfhuys, Louis. “Insights in the Behaviour of Metal-organic Frameworks Through Molecular Modeling : from Force Field Derivation to Thermodynamic Analysis.” 2015 : n. pag. Print.
APA
Vanduyfhuys, L. (2015). Insights in the behaviour of metal-organic frameworks through molecular modeling : from force field derivation to thermodynamic analysis. Ghent University. Faculty of Engineering and Architecture, Ghent, Belgium.
Chicago author-date
Vanduyfhuys, Louis. 2015. “Insights in the Behaviour of Metal-organic Frameworks Through Molecular Modeling : from Force Field Derivation to Thermodynamic Analysis”. Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture.
Chicago author-date (all authors)
Vanduyfhuys, Louis. 2015. “Insights in the Behaviour of Metal-organic Frameworks Through Molecular Modeling : from Force Field Derivation to Thermodynamic Analysis”. Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture.
Vancouver
1.
Vanduyfhuys L. Insights in the behaviour of metal-organic frameworks through molecular modeling : from force field derivation to thermodynamic analysis. [Ghent, Belgium]: Ghent University. Faculty of Engineering and Architecture; 2015.
IEEE
[1]
L. Vanduyfhuys, “Insights in the behaviour of metal-organic frameworks through molecular modeling : from force field derivation to thermodynamic analysis,” Ghent University. Faculty of Engineering and Architecture, Ghent, Belgium, 2015.
@phdthesis{6976303,
  author       = {Vanduyfhuys, Louis},
  isbn         = {9789085788478},
  language     = {eng},
  pages        = {XXIX, 372},
  publisher    = {Ghent University. Faculty of Engineering and Architecture},
  school       = {Ghent University},
  title        = {Insights in the behaviour of metal-organic frameworks through molecular modeling : from force field derivation to thermodynamic analysis},
  year         = {2015},
}