Stimuli-responsive microstructures are critical to create adaptable systems in soft robotics and biosciences. For such applications, the materials must be compatible with aqueous environments and enable the manufacturing of three-dimensional structures. Poly(N-isopropylacrylamide) (pNIPAM) is a well-established polymer, exhibiting a substantial response to changes in temperature close to its lower critical solution temperature. To create complex actuation patterns, materials that react differently with respect to a stimulus are required. Here, we introduce functional three-dimensional hetero-microstructures based on pNIPAM. By variation of the local exposure dose in three-dimensional laser lithography, we demonstrate that the material param...
The light-induced deformation of a micro-textured photo-sensitive polymeric material is exploited fo...
Shape memory polymers are attractive smart materials that have many practical applications and acade...
The ability to pattern material response, voxel-by-voxel, to direct actuation and manipulation in ma...
Stimuli-responsive microstructures are critical to create adaptable systems in soft robotics and bio...
Thermoresponsive hydrogels such as poly(N-isopropylacrylamide) (pNIPAM) are highly interesting mater...
3D architectures with nearly arbitrary geometry and features on the submicron scale can be fabricate...
AbstractEnhancing the resolution of 3D patterning techniques in functional soft polymers enlarges th...
Enhancing the resolution of 3D patterning techniques in functional soft polymers enlarges the applic...
Ideally, many materials should have a “knob” that allows for changing its properties at will, includ...
Molecular photoswitches that can reversibly change color upon irradiation are promising materials fo...
Over the past decade, progress in direct laser writing by two-photon polymerization (DLW-TPP) of sti...
The continuing interest in stimuli-responsive materials has yielded quite an expansive variety of sm...
Poly(N-isopropylacrylamide) (PNIPAAm) is one of the most popular temperature responsive hydrogel whi...
The study of stimuli-responsive materials that act as transducers, converting one form of energy to ...
Stretching individual living cells with light is a standard method to assess their mechanical proper...
The light-induced deformation of a micro-textured photo-sensitive polymeric material is exploited fo...
Shape memory polymers are attractive smart materials that have many practical applications and acade...
The ability to pattern material response, voxel-by-voxel, to direct actuation and manipulation in ma...
Stimuli-responsive microstructures are critical to create adaptable systems in soft robotics and bio...
Thermoresponsive hydrogels such as poly(N-isopropylacrylamide) (pNIPAM) are highly interesting mater...
3D architectures with nearly arbitrary geometry and features on the submicron scale can be fabricate...
AbstractEnhancing the resolution of 3D patterning techniques in functional soft polymers enlarges th...
Enhancing the resolution of 3D patterning techniques in functional soft polymers enlarges the applic...
Ideally, many materials should have a “knob” that allows for changing its properties at will, includ...
Molecular photoswitches that can reversibly change color upon irradiation are promising materials fo...
Over the past decade, progress in direct laser writing by two-photon polymerization (DLW-TPP) of sti...
The continuing interest in stimuli-responsive materials has yielded quite an expansive variety of sm...
Poly(N-isopropylacrylamide) (PNIPAAm) is one of the most popular temperature responsive hydrogel whi...
The study of stimuli-responsive materials that act as transducers, converting one form of energy to ...
Stretching individual living cells with light is a standard method to assess their mechanical proper...
The light-induced deformation of a micro-textured photo-sensitive polymeric material is exploited fo...
Shape memory polymers are attractive smart materials that have many practical applications and acade...
The ability to pattern material response, voxel-by-voxel, to direct actuation and manipulation in ma...