Computer simulation study of tert-butyl alcohol. 2. Structure in aqueous solution

Citation
Pg. Kusalik et al., Computer simulation study of tert-butyl alcohol. 2. Structure in aqueous solution, J PHYS CH B, 104(40), 2000, pp. 9533-9539
Citations number
22
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF PHYSICAL CHEMISTRY B
ISSN journal
15206106 → ACNP
Volume
104
Issue
40
Year of publication
2000
Pages
9533 - 9539
Database
ISI
SICI code
1520-6106(20001012)104:40<9533:CSSOTA>2.0.ZU;2-T
Abstract
MD simulations of tert-butyl alcohol (TBA), dissolved in water, are carried out. Two aqueous alcohol solutions are studied, a dilute 2 mol % and a mor e concentrated, 8 mol % solution. Two new potential models are used for TEA , a simple rigid three-site model and a flexible all-atom 15-site model. In solution, the flexible TEA model is dissolved with flexible SPC water mole cules, while the rigid tert-butyl alcohol is simulated in rigid SPC/E water . This study principally focuses on the hydration structure around TEA and a possible self-association of TEA due to the strong amphiphilic character of this bulky molecule. In the more concentrated solutions and for both TEA models, small aggregates of a few alcohol molecules are formed spontaneous ly, persisting several tens of picoseconds. Tail-to-tail pairwise configura tions of alcohols are preferred. In the dilute solution, little tendency to aggregation is observed during the simulation. The diffusion of the alcoho ls is reduced considerably as the concentration of the solution increases. Water structure is significantly enhanced upon the addition of TEA. The hyd ration structure of both models of TEA is markedly different from that of m ethanol, indicating that the steric bulk of a tert-butyl group can have lar ge, though indirect, effect on hydrogen bonding.