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Review of electrospun hydrogel nanofiber system: Synthesis, Properties and Applications

期刊

POLYMER ENGINEERING AND SCIENCE
卷 61, 期 7, 页码 1887-1911

出版社

WILEY
DOI: 10.1002/pen.25709

关键词

cross‐ linking approach; electrospinning; fabrication method; hydrogels; nanofibers

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Hydrogel-based nanofibers combine the desirable properties of both hydrogel and nanofiber, making them suitable for various applications such as drug delivery, tissue engineering, and wastewater treatment. Various fabrication methods exist, with electrospinning being the most popular for synthesizing hydrogel nanofibers.
Hydrogel-based nanofibers or vice versa are a relatively new class of nanomaterials, in which hydrogels are structured in nanofibrous form. Structure and size of the material directly governs its functionality, therefore, in hydrogel science, the nanofibrous form of hydrogels enables its usage in targeted applications. Hydrogel nanofiber system combines the desirable properties of both hydrogel and nanofiber like flexibility, soft consistency, elasticity, and biocompatibility due to high water content, large surface area to volume ratio, low density, small pore size and interconnected pores, high stiffness, tensile strength, and surface functionality. Swelling behavior is a critical property of hydrogels that is significantly increased in hydrogel nanofibers due to their small size. Electrospinning is the most popular method to fabricate hydrogel nanofibers, while other processes like self-assembly, solution blowing and template synthesis also exist. Merging the characteristics of both hydrogels and nanofibers in one system allows applications in drug delivery, tissue engineering, actuation, wound dressing, photoluminescence, light-addressable potentiometric sensor (LAPS), waterproof breathable membranes, and enzymatic immobilization. Treatment of wastewater, detection, and adsorption of metal ions are also emerging applications. In this review paper, we intend to summarize in detail about electrospun hydrogel nanofiber in relation to its synthesis, properties, and applications.

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