Fourier transform infrared study on the state of water sorbed to poly(ethylene glycol) films

Citation
H. Kitano et al., Fourier transform infrared study on the state of water sorbed to poly(ethylene glycol) films, LANGMUIR, 17(6), 2001, pp. 1889-1895
Citations number
42
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
LANGMUIR
ISSN journal
07437463 → ACNP
Volume
17
Issue
6
Year of publication
2001
Pages
1889 - 1895
Database
ISI
SICI code
0743-7463(20010320)17:6<1889:FTISOT>2.0.ZU;2-#
Abstract
The state of sorbed water and sorption processes of water in poly(ethylene glycols (PEG) films were studied by Fourier transform infrared. From the as signment and time evolution of the components of the O-H stretching band, t he adsorption and penetration of water into the films are considered to pro ceed as follows: (1) At the polymer surface, a water molecule binds to the oxygen atoms of PEG with one of its hydrogen atoms ("binding water"). The s ame phenomenon more gradually occurs in the polymer matrix too. (2) The wat er binding to the oxygen atoms of PEG molecules with both of its hydrogen a toms ("bridging water") is formed from the binding water, while a dimeric w ater is gradually formed by the association of the free water molecule with the binding water. (3) The amount of monomeric species (both binding water and bridging water) is equilibrated. (4) The water dimer is further formed by the association of the free water molecule with the binding water, and finally the amount of the dimer is equilibrated. When the molecular weight of PEG was small, a new band at 8400 cm(-1) gradually appeared. This band c ould be attributed to the O-H stretching of water molecules attaching to hy droxyl groups at the end of PEG molecules. An ab initio molecular orbital c alculation and hybrid density functional method supported the assignment of the peaks.