We have investigated the mechanism of the superior mechanical robustness of coated thin films of the catechol derivative urushiol. We synthesized hydrogenated urushiol (h-urushiol) by hydrogenating the double bonds in the long alkyl side chain of urushiol, and the physical properties of thin films of mixtures of urushiol and h-urushiol were evaluated. Atomic force microscopy observations revealed that these coated thin films have a homogeneous surface with no phase separation, regardless of the h-urushiol content, arising from the similarity of the chemical structures. The films showed good adhesive properties because the adhesion originates from the catechol structure. In contrast, curing time depended strongly upon the h-urushiol content....
Amino acid-based poly(ester urea) (PEU) copolymers functionalized with pendant catechol groups that...
We report the synthesis and characterization of catechol-functionalized film-forming latexes that di...
In this work, we combine nature’s amazing bioadhesive catechol with the excellent bioinert synthetic...
We have fabricated plant-based coating materials using urushiol analogues that were synthesized via ...
We have demonstrated the spray-assisted coating of the catechol derivative, urushiol. Spraying a mix...
Photocurable urushiol analogues were synthesized using eugenol (an ingredient of clove oil) as the s...
In the present work, the synthesis of segmented polyurethanes functionalized with catechol moieties ...
One important aspect of nanotechnology includes thin films capable of being applied to a wide variet...
The development of materials based on renewable resources with enhanced mechanical and physicochemic...
The hydrolysis and condensation reactions involved in synthesis of ureasil-polyether films influence...
One important aspect of nanotechnology includes thin films capable of being applied to a wide variet...
Optimization of cell-material interactions is crucial for the success of synthetic biomaterials in g...
peer reviewedGreen routes for the synthesis of high-performance isocyanate-free polyurethane coating...
Green routes for the synthesis of high-performance isocyanate-free polyurethane coatings and adhesiv...
The development of self-healing materials represents an ongoing paradigm shift in materials science ...
Amino acid-based poly(ester urea) (PEU) copolymers functionalized with pendant catechol groups that...
We report the synthesis and characterization of catechol-functionalized film-forming latexes that di...
In this work, we combine nature’s amazing bioadhesive catechol with the excellent bioinert synthetic...
We have fabricated plant-based coating materials using urushiol analogues that were synthesized via ...
We have demonstrated the spray-assisted coating of the catechol derivative, urushiol. Spraying a mix...
Photocurable urushiol analogues were synthesized using eugenol (an ingredient of clove oil) as the s...
In the present work, the synthesis of segmented polyurethanes functionalized with catechol moieties ...
One important aspect of nanotechnology includes thin films capable of being applied to a wide variet...
The development of materials based on renewable resources with enhanced mechanical and physicochemic...
The hydrolysis and condensation reactions involved in synthesis of ureasil-polyether films influence...
One important aspect of nanotechnology includes thin films capable of being applied to a wide variet...
Optimization of cell-material interactions is crucial for the success of synthetic biomaterials in g...
peer reviewedGreen routes for the synthesis of high-performance isocyanate-free polyurethane coating...
Green routes for the synthesis of high-performance isocyanate-free polyurethane coatings and adhesiv...
The development of self-healing materials represents an ongoing paradigm shift in materials science ...
Amino acid-based poly(ester urea) (PEU) copolymers functionalized with pendant catechol groups that...
We report the synthesis and characterization of catechol-functionalized film-forming latexes that di...
In this work, we combine nature’s amazing bioadhesive catechol with the excellent bioinert synthetic...