The dynamic covalent characteristics of oxime and boronate ester bonds have been explored. A small excess of a competing aldehyde under acidic conditions resulted in oxime polymer degradation from high molecular weights (30 kDa) to low molecular weight oligomers (2.2 kDa). The dynamic nature of oxime bonds imparts oxime cross-linked hydrogels with self-healing properties and the incorporation of phenyl boronic acid groups into the hydrogel network provides a platform for hydrogel functionalization. The addition of a polyphenol (tannic acid) proves a facile means to incorporate a second, dynamic covalent cross-linking network through boronate ester formation which, owing to the increase in the degree of cross-linking, is found to be nearly d...
The development of self-healing materials represents an ongoing paradigm shift in materials science ...
Hydrogels with self-healing features that can spontaneously repair themselves upon mechanical damage...
Dynamically restructuring (“self-healing”) hydrogels were prepared by reversible formation of boroni...
B–O bonds are effective for constructing self-healing polymers, because of their unique combination ...
This report describes the synthesis and characterization of boronate ester-cross-linked hydrogels ca...
Multifunctional and multiresponsive hydrogels have presented a promising platform to design and fabr...
© 2017 Dr. Joe CollinsThe overarching objective of this thesis is to investigate the oxime click rea...
International audienceWe demonstrate here, for the first time, formation of injectable dynamic coval...
Self-healable hydrogels based on the dynamically reversible boronate ester or borate ester bonds are...
Les hydrogels injectables et auto-réparants suscitent un intérêt particulier dans les domaines de l'...
Drawing on inspiration from nature, transient, dynamic interactions can encode function into synthet...
The self-healing capability of a material refers to its ability to autonomously heal fractures or de...
The precise chemical modification of marine-derived biopolymers provides a unique opportunity for fa...
This thesis describes the experimental development of new dynamic hydrogels based on reversible thio...
Intrinsic self-healing hydrogels with excellent mechanical properties are still difficult to achieve...
The development of self-healing materials represents an ongoing paradigm shift in materials science ...
Hydrogels with self-healing features that can spontaneously repair themselves upon mechanical damage...
Dynamically restructuring (“self-healing”) hydrogels were prepared by reversible formation of boroni...
B–O bonds are effective for constructing self-healing polymers, because of their unique combination ...
This report describes the synthesis and characterization of boronate ester-cross-linked hydrogels ca...
Multifunctional and multiresponsive hydrogels have presented a promising platform to design and fabr...
© 2017 Dr. Joe CollinsThe overarching objective of this thesis is to investigate the oxime click rea...
International audienceWe demonstrate here, for the first time, formation of injectable dynamic coval...
Self-healable hydrogels based on the dynamically reversible boronate ester or borate ester bonds are...
Les hydrogels injectables et auto-réparants suscitent un intérêt particulier dans les domaines de l'...
Drawing on inspiration from nature, transient, dynamic interactions can encode function into synthet...
The self-healing capability of a material refers to its ability to autonomously heal fractures or de...
The precise chemical modification of marine-derived biopolymers provides a unique opportunity for fa...
This thesis describes the experimental development of new dynamic hydrogels based on reversible thio...
Intrinsic self-healing hydrogels with excellent mechanical properties are still difficult to achieve...
The development of self-healing materials represents an ongoing paradigm shift in materials science ...
Hydrogels with self-healing features that can spontaneously repair themselves upon mechanical damage...
Dynamically restructuring (“self-healing”) hydrogels were prepared by reversible formation of boroni...