Epidemic models for phase transitions: application to a physical gel
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Date
2017
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Publisher
Taylor & Francis Ltd
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Abstract
Carrageenan gels are characterized by reversible sol-gel and gel-sol transitions under cooling and heating processes and these transitions are approximated by generalized logistic growth curves. We express the transitions of carrageenan-water system as a representative of reversible physical gels in terms of a modified Susceptible-Infected-Susceptible epidemic model as opposed to the Susceptible-Infected-Removed model used to represent the (irreversible) chemical gel formation in the previous work. We locate the gel point T-c of sol-gel and gel-sol transitions and we find that for the sol-gel transition (cooling) T-c > T-sg (transition temperature) i.e. T-c is earlier in time for all carrageenan contents and moves forward in time and gets closer to T-sg as the carrageenan content increases. For the gel-sol transition (heating) T-c is relatively closer to T-gs
it is greater than T-gs i.e. later in time for low carrageenan contents and moves backward as carrageenan content increases.
it is greater than T-gs i.e. later in time for low carrageenan contents and moves backward as carrageenan content increases.
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Keywords
Sol-gel, Gel-sol transitions, Carrageenan, Generalized logistic curve, Gel point
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Citation
5
WoS Q
N/A
Scopus Q
Q3
Source
Volume
90
Issue
9
Start Page
905
End Page
913