Table 1 (continued)
Monomers and crosslinkers
Solvent
a
Initiating system
Temperature
of cryotropic
gelation (
C) What was done and reported
References
Acrylic acid + methylmethacrylate +
oligoethylene glycol
Water-in-oil
emulsion
γ-rays
No definite
data
Preparation of polymeric carriers
for the immobilization of
enzymes
[168]
Olygoethylene glycol methacrylate +
tetraethyleneglycol diacrylate
Water
β-beams
À5 to
À30
Preparation and study of physicochemical properties and
macroporous morphology of
respective cryogels
[101]
III. Use of photoinitiation
Acrylamide (or
N-iso-propylacryamide, or
2-hydroxyethylmethacrylate) +
oligoethylene glycol diacrylate
Water
H
2 O
2 + UV irradiation
À20
Preparation and study of physicochemical properties and
macroporous morphology of
resultant cryogels
[102, 103]
Acrylamide +
N,N
0
-methylene-bisacrylamide
Water
1-[4-(2-hydroxyethyl)
methyl-1-propane-1one + UV irradiation
À13
Preparation of quickly swelling
spongy poly(acrylamide)
cryogels, study of their properties and wide pore
morphology
[169]
H
2 O
2 + UV irradiation
À20
Synthesis and study of the poly
(acrylamide) cryogel matrices for the immobilization of
enzymes
[170]
N-Isopropylacrylamide or
N,N-dimethylacrylamide +
N,N
0
-
methylene-bis-acrylamide + carbon
nanotubes
Water
H
2 O
2 + UV irradiation
À20
Preparation and study of
cryogels with entrapped carbon nanotubes
[171]
14
V.I. Lozinsky
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