Water confined in non-ionic fluorocarbon reverse micelles was investigated through infrared spectroscopy. The characteristic OH stretching band is seen to exhibit significant changes upon growing water core size. An analysis in terms of three gaussians, each of which being ascribed to different water "type" molecules is performed. From a comparison with ionic systems, it is found that the presence of counterions is not a major factor in the perturbation of water connectivity, thus suggesting that the size of confinement prevails

Brubach, J., Mermet, A., Filabozzi, A., Colavita, P., Gerschel, A., Roy, P. (2000). Infrared investigation of water encapsulated in non ionic reverse micelles. JOURNAL DE PHYSIQUE IV, 4(10), 215-218 [10.1051/jp4:2000743].

Infrared investigation of water encapsulated in non ionic reverse micelles

FILABOZZI, ALESSANDRA;
2000-01-01

Abstract

Water confined in non-ionic fluorocarbon reverse micelles was investigated through infrared spectroscopy. The characteristic OH stretching band is seen to exhibit significant changes upon growing water core size. An analysis in terms of three gaussians, each of which being ascribed to different water "type" molecules is performed. From a comparison with ionic systems, it is found that the presence of counterions is not a major factor in the perturbation of water connectivity, thus suggesting that the size of confinement prevails
2000
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/03 - FISICA DELLA MATERIA
English
Con Impact Factor ISI
https://jp4.journaldephysique.org/articles/jp4/abs/2000/07/jp4200010PR743/jp4200010PR743.html
Brubach, J., Mermet, A., Filabozzi, A., Colavita, P., Gerschel, A., Roy, P. (2000). Infrared investigation of water encapsulated in non ionic reverse micelles. JOURNAL DE PHYSIQUE IV, 4(10), 215-218 [10.1051/jp4:2000743].
Brubach, J; Mermet, A; Filabozzi, A; Colavita, P; Gerschel, A; Roy, P
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/45048
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