Functional hydrogel coatings
Функциональные гидрогелевые покрытия
2020-09-29
SCID: 54.1/hs2pmfy7
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anti-biofouling propertiesbiocompatibilityfunctional hydrogel coatingshydrogel-coated substratestough adhesion
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Abstract (AI)
Hydrogels-natural or synthetic polymer networks that swell in water-can be made mechanically, chemically and electrically compatible with living tissues. There has been intense research and development of hydrogels for medical applications since the invention of hydrogel contact lenses in 1960. More recently, functional hydrogel coatings with controlled thickness and tough adhesion have been achieved on various substrates. Hydrogel-coated substrates combine the advantages of hydrogels, such as lubricity, biocompatibility and anti-biofouling properties, with the advantages of substrates, such as stiffness, toughness and strength. In this review, we focus on three aspects of functional hydrogel coatings: (i) applications and functions enabled by hydrogel coatings, (ii) methods of coating various substrates with different functional hydrogels with tough adhesion, and (iii) tests to evaluate the adhesion between functional hydrogel coatings and substrates. Conclusions and outlook are given at the end of this review.
Key Findings
1
Functional hydrogel coatings combine hydrogel properties—including lubricity, biocompatibility, and antifouling—with substrate stiffness, toughness, and strength.
2
Hydrogel coatings offer a strategy for creating mechanically, chemically, and electrically tissue-compatible interfaces for medical applications.
3
Recent advances enable functional hydrogel coatings with controlled thickness and tough adhesion on diverse substrates.
4
The review categorizes hydrogel-coating applications and functions, coating methods for different substrates and hydrogels, and adhesion-evaluation tests.
Research Object
functional hydrogel coatings on various substrates
Research Subject
their applications and functions, coating methods, and adhesion performance
Publication Details
Publication Date
2020-09-29
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