JOURNAL ARTICLE

Multiple-Responsive Dendronized Hyperbranched Polymers

Xiacong ZhangTing LiuJiatao YanKun LiuWen LiAfang Zhang

Year: 2019 Journal:   ACS Omega Vol: 4 (4)Pages: 7667-7674   Publisher: American Chemical Society

Abstract

By combining topological structures of hyperbranched polymers with dendronized polymers, a series of hyperbranched poly(acylhydrazone)s pendanted with 3-fold branched dendritic oligoethylene glycol (OEG) units were efficiently prepared through A2 + B3 polycondensation. The constituents of these dendritic polymers can be mediated through dynamic covalent acylhydrazones. Owing to the dense OEG pendants, these dendronized hyperbranched polymers are biocompatible and thermoresponsive, and their cloud points (T cps) can be modulated by the branched architecture, solution pH, and addition of a third component. Cell viability in the presence of these hyperbranched poly(acylhydrazone)s can be maintained above 80%. Based on the unique dendritic architecture with rich acylhydrazine groups, dynamic hydrogels cross-linked via acylhydrazone linkages with good mechanical property were prepared, which inherit the characteristic thermoresponsive behavior of the polymer precursors and also show remarkable self-healing properties. This novel kind of topological polymers and their corresponding hydrogels with dynamic and multiple smart properties may have promising applications as biomaterials.

Keywords:
Self-healing hydrogels Polymer Materials science Polymer chemistry Thermoresponsive polymers in chromatography Covalent bond Condensation polymer Polymer architecture Chemical engineering Chemistry Organic chemistry Composite material

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33
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0.63
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Citation History

Topics

Dendrimers and Hyperbranched Polymers
Physical Sciences →  Materials Science →  Polymers and Plastics
Advanced Polymer Synthesis and Characterization
Physical Sciences →  Chemistry →  Organic Chemistry
Synthesis and properties of polymers
Physical Sciences →  Materials Science →  Polymers and Plastics
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