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Humidity Sensing: Relative humidity (RH) sensing schemes are mostly based on intrinsic swelling behavior of hydrogel materials.
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In addition, structures and functions of hydrogel scaffolds are limited due to intrinsic characteristics of hydrogel materials.
Due to the available binding sites of hydrogel materials, it is expected that our hydrogel unit is appropriate for cell culture on its surface.
Self-healing hydrogels with robust mechanical properties is the primary objective of hydrogel materials.
Figure 1 Comparison between mechanical behavior of hydrogel with 3% of PVA and 0.6% of borax (a) and hydrogel with 2% of PVA and 0.4% of borax (b).
The Yeoh material model accurately defines the nonlinear behavior of hydrogels which can be used for further biomechanical simulations of hydrogels.
Despite this effectiveness of the biomimetic hydrogel, the characteristics of different in vivo hydrogels are not understood for their real in vivo behavior of hydrogel-encapsulated cells.
Pacheco et al. (2014) prepared hydrogels from acrylamide and sodium methacrylate (NMA) by solution polymerization and examined the swelling behavior of hydrogels.
In vivo behavior of hydrogel-based biomaterials is very important for rational design of hydrogels for various biomedical applications.
After preparing the desired hydrogels according to optimum condition, the swelling behavior of hydrogels in different media was investigated.
These data showed that the environmental pH value had a great influence on the swelling behavior of hydrogels and that the hydrogels were pH-sensitive.
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