Acidity Constant (pKa) Calculation of Large Solvated Dye Molecules: Evaluation of Two Advanced Molecular Dynamics Methods

Open Access
Authors
  • T. De Meyer
  • B. Ensing
  • S.M.J. Rogge
  • K. De Clerck
Publication date 04-11-2016
Journal ChemPhysChem
Volume | Issue number 17 | 21
Pages (from-to) 3447-3459
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
  • Faculty of Science (FNWI)
Abstract
pH‐Sensitive dyes are increasingly applied on polymer substrates for the creation of novel sensor materials. Recently, these dye molecules were modified to form a covalent bond with the polymer host. This had a large influence on the pH‐sensitive properties, in particular on the acidity constant (pKa). Obtaining molecular control over the factors that influence the pKa value is mandatory for the future intelligent design of sensor materials. Herein, we show that advanced molecular dynamics (MD) methods have reached the level at which the pKa values of large solvated dye molecules can be predicted with high accuracy. Two MD methods were used in this work: steered or restrained MD and the insertion/deletion scheme. Both were first calibrated on a set of phenol derivatives and afterwards applied to the dye molecule bromothymol blue. Excellent agreement with experimental values was obtained, which opens perspectives for using these methods for designing dye molecules.
Document type Article
Note With supplementary file
Language English
Published at https://doi.org/10.1002/cphc.201600734
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De-Meyer_et_al-2016-ChemPhysChem (Final published version)
Supplementary materials
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