This article demonstrates a two-step method to 3D print double network hydrogels at room temperature with a low-cost ($300) 3D printer. A first network precursor solution was made 3D printable via extrusion from a nozzle by adding a layered silicate to make it shear-thinning. After printing and UV-curing, objects were soaked in a second network precursor solution and UV-cured again to create interpenetrating networks of poly(2-acrylamido-2-methylpropanesulfonate) and polyacrylamide. By varying the ratio of polyacrylamide to cross-linker, the trade-off between stiffness and maximum elongation of the gel can be tuned to yield a compression strength and elastic modulus of 61.9 and 0.44 MPa, respectively, values that are greater than those rep...
Despite their highly attractive properties, 3D printing of hydrogel materials can be rather challeng...
The development of a hydrogel-based synthetic cartilage has the potential to overcome many limitatio...
A 3D printable and highly stretchable tough hydrogel is developed by combining poly(ethylene glycol)...
This article demonstrates a two-step method to 3D print double network hydrogels at room temperature...
Hydrogels are a class of hydrated and compliant polymer materials that display a variety of desirabl...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
H2020-ICT-2014-1,TransFlexTeg645241 ERC-CoG-2014, CapTherPV, 647596 Pest-UID/FIS/00068/2013The use o...
There is a current need for the development of robust smart materials for a variety of medical, cons...
Many soft natural tissues display a fascinating set of mechanical properties that remains unmatched ...
49 pagesIn this work, I developed a 3D printable collagen-based double-network (DN) hydrogel, which ...
We demonstrate the additive manufacturing of complex three-dimensional (3D) biological structures us...
A major challenge in three-dimensional (3D) printing of hydrogels is the fabrication of stable const...
Recent developments in soft actuation demand for resilient, responsive materials with locally varyin...
The development of printable biomaterial inks is critical to the application of 3D printing in biome...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Despite their highly attractive properties, 3D printing of hydrogel materials can be rather challeng...
The development of a hydrogel-based synthetic cartilage has the potential to overcome many limitatio...
A 3D printable and highly stretchable tough hydrogel is developed by combining poly(ethylene glycol)...
This article demonstrates a two-step method to 3D print double network hydrogels at room temperature...
Hydrogels are a class of hydrated and compliant polymer materials that display a variety of desirabl...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
H2020-ICT-2014-1,TransFlexTeg645241 ERC-CoG-2014, CapTherPV, 647596 Pest-UID/FIS/00068/2013The use o...
There is a current need for the development of robust smart materials for a variety of medical, cons...
Many soft natural tissues display a fascinating set of mechanical properties that remains unmatched ...
49 pagesIn this work, I developed a 3D printable collagen-based double-network (DN) hydrogel, which ...
We demonstrate the additive manufacturing of complex three-dimensional (3D) biological structures us...
A major challenge in three-dimensional (3D) printing of hydrogels is the fabrication of stable const...
Recent developments in soft actuation demand for resilient, responsive materials with locally varyin...
The development of printable biomaterial inks is critical to the application of 3D printing in biome...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Despite their highly attractive properties, 3D printing of hydrogel materials can be rather challeng...
The development of a hydrogel-based synthetic cartilage has the potential to overcome many limitatio...
A 3D printable and highly stretchable tough hydrogel is developed by combining poly(ethylene glycol)...