Mann, Joseph L’s team published research in Biomacromolecules in 2021-01-11 | 96-53-7

Biomacromolecules published new progress about Biocompatibility. 96-53-7 belongs to class thiazole, and the molecular formula is C3H5NS2, Application of C3H5NS2.

Mann, Joseph L.; Grosskopf, Abigail K.; Smith, Anton A. A.; Appel, Eric A. published the artcile< Highly Branched Polydimethylacrylamide Copolymers as Functional Biomaterials>, Application of C3H5NS2, the main research area is branched polydimethylacrylamide copolymer biomaterial.

Controlled radical polymerization of vinyl monomers with multivinyl cross-linkers leads to the synthesis of highly branched polymers with controlled spatial d. of functional chain ends. The resulting polymers synthesized in this manner have large dispersities resulting from a mixture of unreacted primary chains, low mol. weight branched species, and high mol. weight highly branched species. Through the use of fractional precipitation, we present a synthetic route to high mol. weight highly branched polymers that are absent of low mol. weight species and that contain reactivity toward amines for controlled postpolymn. modification. The controlled spatial d. of functional moieties on these high mol. weight macromol. constructs enable new functional biomaterials with the potential for application in regenerative medicine, immunoengineering, imaging, and controlled drug delivery.

Biomacromolecules published new progress about Biocompatibility. 96-53-7 belongs to class thiazole, and the molecular formula is C3H5NS2, Application of C3H5NS2.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica