The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under stress even as it dynamically assembles and disassembles with time constants of minutes. Synthetic materials that combine reversibility and strain-stiffening properties remain elusive. Here, strain-stiffening hydrogels that have dynamic fibrous polymers as their main structural components are reported. The fibers form via self-assembly of bolaamphiphiles (BA) in water and have a well-defined cross-section of 9 to 10 molecules. Fiber length recovery after sonication, H/D exchange experiments, and rheology confirm the dynamic nature of the fibers. Cross-linking of the fibers yields strain-stiffening, self-healing hydrogels that closely mimic the ...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
Biological materials combine stress relaxation and self-healing with non-linear stress-strain respon...
\u3cp\u3eThe cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
Biomimetic, strain-stiffening materials are reported, made through self-assembly and covalent fixati...
Biomimetic, strain-stiffening materials are reported, made through self-assembly and covalent fixati...
Supramolecular structures with strain-stiffening properties are ubiquitous in nature but remain rare...
Supramolecular structures with strain-stiffening properties are ubiquitous in nature but remain rare...
Biological materials combine stress relaxation and self-healing with non-linear stress-strain respon...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
Biological materials combine stress relaxation and self-healing with non-linear stress-strain respon...
\u3cp\u3eThe cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
The cytoskeleton is a highly adaptive network of filamentous proteins capable of stiffening under st...
Biomimetic, strain-stiffening materials are reported, made through self-assembly and covalent fixati...
Biomimetic, strain-stiffening materials are reported, made through self-assembly and covalent fixati...
Supramolecular structures with strain-stiffening properties are ubiquitous in nature but remain rare...
Supramolecular structures with strain-stiffening properties are ubiquitous in nature but remain rare...
Biological materials combine stress relaxation and self-healing with non-linear stress-strain respon...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
Biological materials combine stress relaxation and self-healing with non-linear stress-strain respon...