Quaternized chitosan (QCh) was homogeneously synthesized by reacting chitosan with 3-chloro-2-hydroxypropyltrimethylammonium chloride (CHPTAC) in alkali/urea aqueous solution for the first time. The structure and solution properties of QCh were characterized by using element analysis, FT-IR, <sup>13</sup>C NMR, SEC-LLS, rheology, viscometer, and ξ-potential measurements. Subsequently, polyelectrolyte complex (PEC) hydrogels were constructed by <i>in situ</i> polymerization of acrylic acid (AA) monomers in the concentrated QCh solution. The structure and mechanical behavior of the prepared hydrogels were systematic studied. Because of the high charge density and solubility of QCh, strong electrostatic interactions were formed in the hydro...
In situ forming hydrogels generated upon spontaneous and biocompatible reaction under physiological ...
Excellent self-recovery is critically important for soft materials such as hydrogels and shape memor...
331-337In this paper, studies on polyelectrolyte hydrogels of both anionic and cationic type are re...
Quaternized chitosan (QCh) was homogeneously synthesized by reacting chitosan with 3-chloro-2-hydrox...
Hydrogels formed by polyelectrolyte complexation (PEC) of oppositely charged biopolymers, free of an...
Homogeneous polyelectrolyte complex (PEC) hydrogels made from chitosan and carboxymethylcellulose we...
International audienceThe controlled complex coacervation of oppositely charged hyaluronic acid (Mw ...
In situ forming hydrogels generated by a spontaneous and biocompatible chemical reaction between two...
Breaking the limitation of traditional acid dissolving methods for chitosan by creating an alkali/ur...
Polysaccharide-based hydrogels are remarkable materials for the development of tissue engineering st...
Based on the good self-healing ability to repair mechanical damage, self-healing hydrogels have arou...
[[abstract]]The strain-stiffening and self-healing capabilities of biological tissues enable them to...
Chitosan (CHI) is a polysaccharide of β-1,4-linked 2-amino-2-deoxy-D-glucopyranose derived by N-deac...
In situ forming hydrogels generated upon spontaneous and biocompatible reaction under physiological ...
Excellent self-recovery is critically important for soft materials such as hydrogels and shape memor...
331-337In this paper, studies on polyelectrolyte hydrogels of both anionic and cationic type are re...
Quaternized chitosan (QCh) was homogeneously synthesized by reacting chitosan with 3-chloro-2-hydrox...
Hydrogels formed by polyelectrolyte complexation (PEC) of oppositely charged biopolymers, free of an...
Homogeneous polyelectrolyte complex (PEC) hydrogels made from chitosan and carboxymethylcellulose we...
International audienceThe controlled complex coacervation of oppositely charged hyaluronic acid (Mw ...
In situ forming hydrogels generated by a spontaneous and biocompatible chemical reaction between two...
Breaking the limitation of traditional acid dissolving methods for chitosan by creating an alkali/ur...
Polysaccharide-based hydrogels are remarkable materials for the development of tissue engineering st...
Based on the good self-healing ability to repair mechanical damage, self-healing hydrogels have arou...
[[abstract]]The strain-stiffening and self-healing capabilities of biological tissues enable them to...
Chitosan (CHI) is a polysaccharide of β-1,4-linked 2-amino-2-deoxy-D-glucopyranose derived by N-deac...
In situ forming hydrogels generated upon spontaneous and biocompatible reaction under physiological ...
Excellent self-recovery is critically important for soft materials such as hydrogels and shape memor...
331-337In this paper, studies on polyelectrolyte hydrogels of both anionic and cationic type are re...