Relationship between Structure and Rheology of Hydrogels for Various Applications

Взаимосвязь между структурой и реологией гидрогелей для различных применений
Gorjan Stojkov, Zafarjon Niyazov, Francesco Picchioni, Ranjita K. Bose
2021-12-09

chemical structure–property relationshipfrequency sweep testshydrogel applicationshydrogel rheologyrheological characterization
Hydrogels have gained a lot of attention with their widespread use in different industrial applications. The versatility in the synthesis and the nature of the precursor reactants allow for a varying range of hydrogels with different mechanical and rheological properties. Understanding of the rheological behavior and the relationship between the chemical structure and the resulting properties is crucial, and is the focus of this review. Specifically, we include detailed discussion on the correlation between the rheological characteristics of hydrogels and their possible applications. Different rheological tests such as time, temperature and frequency sweep, among others, are described and the results of those tests are reported. The most prevalent applications of hydrogels are also discussed.
1
Hydrogel synthesis and precursor chemistry enable broad variation in chemical structure, mechanical properties, and rheological behavior.
2
Rheological characteristics are correlated with potential hydrogel applications across different industrial fields.
3
The review examines relationships between hydrogel chemical structure and resulting rheological and mechanical properties.
4
The review summarizes prevalent hydrogel applications and reports rheological testing results relevant to those uses.
5
Time, temperature, and frequency sweep tests are discussed as methods for characterizing hydrogel rheology.

Hydrogels with varying chemical structures and mechanical and rheological properties

The relationship between hydrogel chemical structure, rheological behavior and characteristics, and applications

Publication Details
Publication Date
2021-12-09
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Authors
Gorjan Stojkov
Zafarjon Niyazov
Francesco Picchioni
Ranjita K. Bose
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