Spider silk is a fascinating material, combining high strength and elasticity that outperforms most synthetic fibers. Another intriguing feature of spider silk is its ability to "supercontract," shrinking up to 50% when exposed to water. This is likely on account of the entropy-driven recoiling of secondary structured proteins when water penetrates the spider silk. In contrast, humidity-driven contraction in synthetic fibers is difficult to achieve. Here, inspired by the spider silk model, a supercontractile fiber (SCF), which contracts up to 50% of its original length at high humidity, comparable to spider silk, is reported. The fiber exhibits up to 300% uptake of water by volume, confirmed via environmental scanning electron microscopy. I...
Typical spider dragline silk tends to outperform other natural fibres and most man-made filaments. H...
supercontraction stress depends upon the rate at which the environment reaches the critical level of...
Smart textiles that sense, interact, and adapt to environmental stimuli have provided exciting new o...
Spider dragline silk is a model biological polymer for biomimetic research due to its many desirable...
Spider dragline silk is a model biological polymer for biomimetic research due to its many desirable...
Spider dragline silk is a model biological polymer for biomimetic research due to its many desirable...
Spider dragline silk has enormous potential for the development of biomimetic fibers that combine st...
Spider dragline silk has enormous potential for the development of biomimetic fibers that combine st...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
The abrupt halt of a bumble bee\u27s flight when it impacts the almost invisible threads of an orb w...
Typical spider dragline silk tends to outperform other natural fibres and most man-made filaments. H...
supercontraction stress depends upon the rate at which the environment reaches the critical level of...
Smart textiles that sense, interact, and adapt to environmental stimuli have provided exciting new o...
Spider dragline silk is a model biological polymer for biomimetic research due to its many desirable...
Spider dragline silk is a model biological polymer for biomimetic research due to its many desirable...
Spider dragline silk is a model biological polymer for biomimetic research due to its many desirable...
Spider dragline silk has enormous potential for the development of biomimetic fibers that combine st...
Spider dragline silk has enormous potential for the development of biomimetic fibers that combine st...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
Water and humidity severely affect the material properties of spider major ampullate silk, causing t...
The abrupt halt of a bumble bee\u27s flight when it impacts the almost invisible threads of an orb w...
Typical spider dragline silk tends to outperform other natural fibres and most man-made filaments. H...
supercontraction stress depends upon the rate at which the environment reaches the critical level of...
Smart textiles that sense, interact, and adapt to environmental stimuli have provided exciting new o...