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(Nanowerk Spotlight) Hydrogel is a soft polymer material rich in water and biocompatible. These materials have been around for more than half a century, and today they have many applications in various fields and industries. Recently, environmentally sensitive ("smart") hydrogels have been the subject of much scientific research in various fields including biomedicine, biotechnology, pharmaceuticals, and separation science.
As a coating, a hydrogel brings many advantages to a regular solid surface: the substrate of a hydrogel coating combines the excellent properties of the substrate (such as strength, stiffness, and toughness) with the excellent properties of a hydrogel (such as Hydrophilicity, lubricity, biocompatibility) together and drug release).
In principle, any hydrogel can be coated with any substrate to achieve certain functions through its combination. This tremendous diversity makes possible many existing and emerging applications in the fields of engineering and medicine. Examples include soft robotic components, drug delivery (for example, using nanocomposite hydrogels), implants, artificial skin, plasmon nanosensors and actuators.
However, manufacturing hydrogel coatings outside of a laboratory environment can be difficult. In existing methods for stable hydrogel coatings, three processes are required: polymerizing monomer units into polymer chains by covalent bonds, crosslinking polymer chains into polymer networks, and polymerizing The network is interconnected to the substrate.
Su Zhigang Suo, a professor of mechanics and materials at Harvard University, told Nanowerk: "The concurrency of the three processes of polymerization, cross-linking, and cross-linking is unnecessary and hinders the widespread application of hydrogel coatings." Inspiration from science, we developed a hydrogel coating preparation technology, which is divided into several steps. This step-by-step synthesis mode separates the polymerization reaction from cross-linking and cross-linking, so that the hydrogel coating The manufacturer and its users. "
Suo and his team of researchers from the Krafty Biotechnology Institute detailed their findings in Advanced Materials ("Hydrogel Coatings").
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