We report a novel approach for patterning thermoresponsive hydrogels based on N,N-diethylacrylamide (DEAAm) and bifunctional Jeffamine ED-600 by dip-pen nanolithography (DPN). The direct writing of micron-sized thermoresponsive polymer spots was achieved with efficient control over feature size. A Jeffamine-based ink prepared through the combination of organic polymers, such as DEAAm, in an inorganic silica network was used to print thermosensitive arrays on a thiol-silanised silicon oxide substrate. The use of a Jeffamine hydrogel, acting as a carrier matrix, allowed a reduction in the evaporation of ink molecules with high volatility, such as DEAAm, and facilitated the transfer of ink from tip to substrate. The thermoresponsive behaviour ...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Functional microgels provide a versatile basis for synthetic in vitro platforms as alternatives to a...
Recent advances in additive manufacturing (AM) technologies provide tools to fabricate biological st...
We report a novel approach for patterning thermoresponsive hydrogels based on N,N-diethylacrylamide ...
We report a novel approach for patterning thermoresponsive hydrogels based on N,N-diethylacrylamide ...
We report a novel approach for patterning thermoresponsive hydrogels based on N,N-diethylacrylamide ...
We report a novel reliable and repeatable technologic manufacturing protocol for the realization of ...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
Cultivation of adherently growing cells in artificial environments is of utmost importance in medici...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
In the past two decades, we have witnessed significant progress in developing high performance stimu...
Environmentally sensitive hydrogels are three-dimensional crosslinked polymer networks capable of un...
International audienceA new strategy for the fabrication of micropatterns of surfaceattached hydroge...
The present thesis work deals with the development of a novel manufacturing protocol for the realiza...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Functional microgels provide a versatile basis for synthetic in vitro platforms as alternatives to a...
Recent advances in additive manufacturing (AM) technologies provide tools to fabricate biological st...
We report a novel approach for patterning thermoresponsive hydrogels based on N,N-diethylacrylamide ...
We report a novel approach for patterning thermoresponsive hydrogels based on N,N-diethylacrylamide ...
We report a novel approach for patterning thermoresponsive hydrogels based on N,N-diethylacrylamide ...
We report a novel reliable and repeatable technologic manufacturing protocol for the realization of ...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
Cultivation of adherently growing cells in artificial environments is of utmost importance in medici...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
In the past two decades, we have witnessed significant progress in developing high performance stimu...
Environmentally sensitive hydrogels are three-dimensional crosslinked polymer networks capable of un...
International audienceA new strategy for the fabrication of micropatterns of surfaceattached hydroge...
The present thesis work deals with the development of a novel manufacturing protocol for the realiza...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Functional microgels provide a versatile basis for synthetic in vitro platforms as alternatives to a...
Recent advances in additive manufacturing (AM) technologies provide tools to fabricate biological st...