The combination of high strength, great toughness, and high heat resistance for polymeric materials is a vital factor for their practical applications. Unfortunately, until now it has remained a major challenge to achieve this performance portfolio because the mechanisms of strength and toughness are mutually exclusive. In the natural world, spider silk features the combination of high strength, great toughness, and excellent thermal stability, which are governed by the nanoconfinement of hydrogen-bonded β-sheets. Here, we report a facile bioinspired methodology for fabricating advanced polymer composite films with a high tensile strength of 152.8 MPa, a high stiffness of 4.35 GPa, and a tensile toughness of 30.3 MJ/m3 in addition to high t...
The realization of high strength, large ductility, and great toughness for polymeric materials is a ...
Spider silks represent stretchable and contractible fibers with high toughness. Those tough fibers w...
Living systems are built of multiscale-composites: materials formed of components with different pro...
The combination of high strength, great toughness, and high heat resistance for polymeric materials ...
The combination of high strength, great toughness, and high heat resistance for polymeric materials ...
The combination of high strength, great toughness, and high heat resistance for polymeric materials ...
It remains a huge challenge to create advanced polymeric materials combining high strength, great to...
Silk and cellulose are biopolymers that show strong potential as future sustainable materials. They ...
The high toughness of natural spider-silk is attributed to their unique β-sheet secondary structures...
It remains a huge challenge to create advanced polymeric materials combining high strength, great to...
Spider silk has exceptional mechanical and biocompatible properties. This project is focused on opti...
The biocompatibility of conducting polymers (CPs) makes them promising for a variety of biomedical a...
The realization of high strength, large ductility, and great toughness for polymeric materials is a ...
Natural spider and worm silks can provide key insights into bio-polymer technology. No-one would hav...
The spider silk fibers have unique high performance properties that make it a desirable model for ar...
The realization of high strength, large ductility, and great toughness for polymeric materials is a ...
Spider silks represent stretchable and contractible fibers with high toughness. Those tough fibers w...
Living systems are built of multiscale-composites: materials formed of components with different pro...
The combination of high strength, great toughness, and high heat resistance for polymeric materials ...
The combination of high strength, great toughness, and high heat resistance for polymeric materials ...
The combination of high strength, great toughness, and high heat resistance for polymeric materials ...
It remains a huge challenge to create advanced polymeric materials combining high strength, great to...
Silk and cellulose are biopolymers that show strong potential as future sustainable materials. They ...
The high toughness of natural spider-silk is attributed to their unique β-sheet secondary structures...
It remains a huge challenge to create advanced polymeric materials combining high strength, great to...
Spider silk has exceptional mechanical and biocompatible properties. This project is focused on opti...
The biocompatibility of conducting polymers (CPs) makes them promising for a variety of biomedical a...
The realization of high strength, large ductility, and great toughness for polymeric materials is a ...
Natural spider and worm silks can provide key insights into bio-polymer technology. No-one would hav...
The spider silk fibers have unique high performance properties that make it a desirable model for ar...
The realization of high strength, large ductility, and great toughness for polymeric materials is a ...
Spider silks represent stretchable and contractible fibers with high toughness. Those tough fibers w...
Living systems are built of multiscale-composites: materials formed of components with different pro...