Novel cationic and amphiphilic pullulan derivatives II: pH dependant physicochemical properties
The physicochemical properties (viscosity, surface tension, zeta potential, size measurement) of Pullulan, DEAE-Pullulan (DS 0 = 0.8) (DS 0 is the degree of substitution of total nitrogen groups per anhydroglucose units (AGU)) and the alkylated derivatives Y-C x -DEAE-Pullulan ( Y = 100 DS C x (DS C...
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Veröffentlicht in: | Carbohydrate polymers 2010-03, Vol.80 (1), p.123-129 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The physicochemical properties (viscosity, surface tension, zeta potential, size measurement) of Pullulan, DEAE-Pullulan (DS
0
=
0.8) (DS
0 is the degree of substitution of total nitrogen groups per anhydroglucose units (AGU)) and the alkylated derivatives
Y-C
x
-DEAE-Pullulan (
Y
=
100 DS
C
x
(DS
C
x
: the number of alkyl groups per anhydroglucose units)
Y is equal to 44 and 42 for C
10 and C
12, respectively) were studied in aqueous salt-free solutions at pH 3, 8 and 11. For the DEAE-Pullulan a strong polyelectrolyte character at pH values below 8 was found, which, despite the presence of a sizeable fraction of permanent cationic charges due to a side chemical reaction (Hoffmann addition), evolved to a marked amphiphilic behavior in alkaline media. Alkylated DEAE-Pullulan derivatives (44% of C
10 and 42% of C
12) are strongly amphiphilic regardless of the pH. The low intrinsic viscosity (Fuoss and Fedors models) values confirmed the degradation of cationic amphiphilic pullulan derivatives. |
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ISSN: | 0144-8617 1879-1344 |
DOI: | 10.1016/j.carbpol.2009.11.003 |