Spider silk is a fascinating natural composite material. Its combination of strength and toughness is unrivalled in nature, and as a result, it has gained considerable interest from the medical, physics, and materials communities. Most of this attention has focused on the one to tens of nanometer scale: predominantly the primary (peptide sequences) and secondary (β sheets, helices, and amorphous domains) structure, with some insights into tertiary structure (the arrangement of these secondary structures) to describe the origins of the mechanical and biological performance. Starting with spider silk, and relating our findings to collagen fibrils, we describe toughening mechanisms at the hundreds of nanometer scale, namely, the fibril morphol...
Spider silk shows great potential as a biomaterial: in addition to biocompatibility and biodegradabi...
This work establishes a tensegrity model of spider dragline silk. Tensegrity systems are ubiquitous ...
Spider silks are biological protein polymers which are spun into fibers with an incredibly diverse r...
Spider silk is a fascinating natural composite material. Its combination of strength and toughness i...
Spider silk is a fascinating natural composite material. Its combination of strength and toughness...
he toughness of certain biological materials results from the balance of properties in `hierarchical...
Silk is an exceptionally strong, extensible, and tough material made from simple protein building bl...
Spider silk exhibits a combination of outstanding tensile strength and extensibility unique among al...
Spider silk rivals the best synthetic materials in terms of strength and toughness. It is widely acc...
Natural spider and worm silks can provide key insights into bio-polymer technology. No-one would hav...
Spider dragline silk shows the highest toughness in comparison to all other known natural or man-mad...
Molecular and nanostructural mechanisms of deformation, strength and toughness of spider silk fibril
Spider silk is an ideal material in material engineering and biomedical areas. Its remarkable streng...
Spider silk has biocompatibility and biodegradability properties and is known for the mechanical, ph...
Spider silk shows great potential as a biomaterial: in addition to biocompatibility and biodegradabi...
Spider silk shows great potential as a biomaterial: in addition to biocompatibility and biodegradabi...
This work establishes a tensegrity model of spider dragline silk. Tensegrity systems are ubiquitous ...
Spider silks are biological protein polymers which are spun into fibers with an incredibly diverse r...
Spider silk is a fascinating natural composite material. Its combination of strength and toughness i...
Spider silk is a fascinating natural composite material. Its combination of strength and toughness...
he toughness of certain biological materials results from the balance of properties in `hierarchical...
Silk is an exceptionally strong, extensible, and tough material made from simple protein building bl...
Spider silk exhibits a combination of outstanding tensile strength and extensibility unique among al...
Spider silk rivals the best synthetic materials in terms of strength and toughness. It is widely acc...
Natural spider and worm silks can provide key insights into bio-polymer technology. No-one would hav...
Spider dragline silk shows the highest toughness in comparison to all other known natural or man-mad...
Molecular and nanostructural mechanisms of deformation, strength and toughness of spider silk fibril
Spider silk is an ideal material in material engineering and biomedical areas. Its remarkable streng...
Spider silk has biocompatibility and biodegradability properties and is known for the mechanical, ph...
Spider silk shows great potential as a biomaterial: in addition to biocompatibility and biodegradabi...
Spider silk shows great potential as a biomaterial: in addition to biocompatibility and biodegradabi...
This work establishes a tensegrity model of spider dragline silk. Tensegrity systems are ubiquitous ...
Spider silks are biological protein polymers which are spun into fibers with an incredibly diverse r...