Structural adhesives are relevant to many engineering applications, especially those requiring load-bearing joints with high lap shear strength. Typical adhesives are synthesized from acrylics, epoxies, or urethanes, which may pose a burden to sustainability and the environment. In nature, the interfacial interactions between chitin and proteins are used for structural purposes and as a bio-cement, resulting in materials with properties unmatched by their man-made counterparts. Herein, we show that related supramolecular interactions can be harnessed to develop high strength green adhesives based on chitin nanocrystals (ChNCs), isolated from shrimp shells, and hen egg white lysozyme (HEWL) used in its monomeric or amyloid forms. Consolidati...
To drive more sustainable technological innovations, highly abundant natural resources such as a bio...
Many marine organisms harness diverse protein molecules as underwater adhesives to achieve strong an...
Production of novel protein-based materials has become a widespread and valuable field of research w...
| openaire: EC/H2020/788489/EU//BioELCellStructural adhesives are relevant to many engineering appli...
Biological organisms demonstrate remarkable abilities to affix themselves to almost any surface. Man...
Gluing dynamic, wet biological tissue is important in injury treatment yet difficult to achieve. Pol...
One of the key steps towards a broader implementation of renewable materials is the development of b...
Nature has developed protein-based adhesives whose underwater performance has attracted much researc...
[Departement_IRSTEA]Ecotechnologies [TR1_IRSTEA]MOTIVEInternational audienceThe aim of this study is...
Polysaccharide-based adhesives, especially chitosan (CS)-derived adhesives, serve as promising susta...
Adhesion represents a key joining technology and nature has been developing adhesives for millions o...
| openaire: EC/H2020/788489/EU//BioELCellAdhesion occurs by covalent bonding, as in reactive structu...
In nature, chitin is organized in hierarchical structures composed of nanoscale building blocks that...
Barnacles are the only sessile crustaceans, and their larva, the cyprid, is supremely adapted for at...
Mussels secrete protein-based byssal threads to tether to rocks, ships, and other organisms underwat...
To drive more sustainable technological innovations, highly abundant natural resources such as a bio...
Many marine organisms harness diverse protein molecules as underwater adhesives to achieve strong an...
Production of novel protein-based materials has become a widespread and valuable field of research w...
| openaire: EC/H2020/788489/EU//BioELCellStructural adhesives are relevant to many engineering appli...
Biological organisms demonstrate remarkable abilities to affix themselves to almost any surface. Man...
Gluing dynamic, wet biological tissue is important in injury treatment yet difficult to achieve. Pol...
One of the key steps towards a broader implementation of renewable materials is the development of b...
Nature has developed protein-based adhesives whose underwater performance has attracted much researc...
[Departement_IRSTEA]Ecotechnologies [TR1_IRSTEA]MOTIVEInternational audienceThe aim of this study is...
Polysaccharide-based adhesives, especially chitosan (CS)-derived adhesives, serve as promising susta...
Adhesion represents a key joining technology and nature has been developing adhesives for millions o...
| openaire: EC/H2020/788489/EU//BioELCellAdhesion occurs by covalent bonding, as in reactive structu...
In nature, chitin is organized in hierarchical structures composed of nanoscale building blocks that...
Barnacles are the only sessile crustaceans, and their larva, the cyprid, is supremely adapted for at...
Mussels secrete protein-based byssal threads to tether to rocks, ships, and other organisms underwat...
To drive more sustainable technological innovations, highly abundant natural resources such as a bio...
Many marine organisms harness diverse protein molecules as underwater adhesives to achieve strong an...
Production of novel protein-based materials has become a widespread and valuable field of research w...