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  5. Implicit and explicit solvent models for modelling a bifunctional arene ruthenium hydrogen-storage catalyst: a classical and ab initio molecular simulation study
 
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Implicit and explicit solvent models for modelling a bifunctional arene ruthenium hydrogen-storage catalyst: a classical and ab initio molecular simulation study

Author(s)
Bandaru, Sateesh  
English, Niall J.  
MacElroy, J. M. Don  
Uri
http://hdl.handle.net/10197/5214
Date Issued
2014-04
Date Available
2015-04-05T03:00:12Z
Abstract
Classical and ab initio, density functional theory- and semiempirical-based molecular simulation, including molecular dynamics, have been carried out to compare and contrast the effect of explicit and implicit solvation representation of tetrahydrofuran (THF) solvent on the structural, energetic, and dynamical properties of a novel bifunctional arene ruthenium catalyst embedded therein. Particular scrutiny was afforded to hydrogen-bonding and energetic interactions with the THF liquid. It was found that the presence of explicit THF solvent molecules is required to capture an accurate picture of the catalyst's structural properties, particularly in view of the importance of hydrogen bonding with the surrounding THF molecules. This has implications for accurate modeling of the reactivity of the catalyst.
Sponsorship
Science Foundation Ireland
Type of Material
Journal Article
Publisher
Wiley
Journal
Journal of Computational Chemistry
Volume
35
Issue
9
Start Page
683
End Page
691
Copyright (Published Version)
2014 Wiley
Subjects

Molecular dynamics

Explicit solvation

Implicit solvation

Hydrogen-storage cata...

RMSD

DOI
10.1002/jcc.23514
Language
English
Status of Item
Peer reviewed
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
File(s)
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Implicit_explicit_jcc_final.pdf

Size

1.62 MB

Format

Adobe PDF

Checksum (MD5)

43114b78f3d228196f4a8731276aafb2

Owning collection
Chemical and Bioprocess Engineering Research Collection

Item descriptive metadata is released under a CC-0 (public domain) license: https://creativecommons.org/public-domain/cc0/.
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