International audienceStructures that change their shape in response to external stimuli unfold possibilities for more efficient and versatile production of 3D objects. Direct laser writing (DLW) is a technique based on two-photon polymerization that allows the fabrication of microstructures with complex 3D geometries. Here, it is shown that polymerization shrinkage in DLW can be utilized to create structures with locally controllable residual stresses that enable programmable, self-bending behavior. To demonstrate this concept, planar and 3D-structured sheets are preprogrammed to evolve into bio-inspired shapes (lotus flowers and shark skins). The fundamental mechanisms that control the self-bending behavior are identified and tested with ...
Nature uses various activation mechanisms to program complex transformations in the shape and functi...
Direct laser writing is an effective technique for fabrication of complex 3D polymer networks using ...
International audienceIn this paper, we demonstrate the possibility of generating arbitrary polymer ...
International audienceStructures that change their shape in response to external stimuli unfold poss...
International audienceStructures that change their shape in response to external stimuli unfold poss...
International audienceStructures that change their shape in response to external stimuli unfold poss...
International audienceStructures that change their shape in response to external stimuli unfold poss...
Material shrinkage commonly occurs in additive manufacturing during the phase transition of the prin...
International audienceRecently, photo-controlled reversible addition-fragmentation chain transfer (R...
International audienceRecently, photo-controlled reversible addition-fragmentation chain transfer (R...
International audienceRecently, photo-controlled reversible addition-fragmentation chain transfer (R...
Over the last few decades, stereolithography has emerged as a leading additive manufacturing techniq...
Abstract Micronanofabrication technologies developed so far pursue faithful conversion from digital ...
Controllable transformations from two-dimensional (2D) patterns to three-dimensional (3D) geometries...
Nature uses various activation mechanisms to program complex transformations in the shape and functi...
Nature uses various activation mechanisms to program complex transformations in the shape and functi...
Direct laser writing is an effective technique for fabrication of complex 3D polymer networks using ...
International audienceIn this paper, we demonstrate the possibility of generating arbitrary polymer ...
International audienceStructures that change their shape in response to external stimuli unfold poss...
International audienceStructures that change their shape in response to external stimuli unfold poss...
International audienceStructures that change their shape in response to external stimuli unfold poss...
International audienceStructures that change their shape in response to external stimuli unfold poss...
Material shrinkage commonly occurs in additive manufacturing during the phase transition of the prin...
International audienceRecently, photo-controlled reversible addition-fragmentation chain transfer (R...
International audienceRecently, photo-controlled reversible addition-fragmentation chain transfer (R...
International audienceRecently, photo-controlled reversible addition-fragmentation chain transfer (R...
Over the last few decades, stereolithography has emerged as a leading additive manufacturing techniq...
Abstract Micronanofabrication technologies developed so far pursue faithful conversion from digital ...
Controllable transformations from two-dimensional (2D) patterns to three-dimensional (3D) geometries...
Nature uses various activation mechanisms to program complex transformations in the shape and functi...
Nature uses various activation mechanisms to program complex transformations in the shape and functi...
Direct laser writing is an effective technique for fabrication of complex 3D polymer networks using ...
International audienceIn this paper, we demonstrate the possibility of generating arbitrary polymer ...