We propose a method to measure the nonuniform shrinkage and stretching of polymerized nanostructures by marking them with periodical points. The method was tested, and the results showed that suspended lines themselves shrank after fabrication, but they were also stretched due to the shrinkage of their support anchors, a phenomenon that has not been investigated much before. The extension strain was measured from the change in the separation points, which reached 75% for a 2 mu m-long line with a width of 40 nm.Nanoscience & NanotechnologyMaterials Science, MultidisciplinaryPhysics, AppliedSCI(E)EIPubMed14ARTICLE50553031
International audienceIt is commonly accepted that a polymer matrix inside electrospun nanofibers is...
Material shrinkage commonly occurs in additive manufacturing during the phase transition of the prin...
International audienceStructures that change their shape in response to external stimuli unfold poss...
We report on the scaling laws of nanorods in two photon polymerization nanofabrication using a conti...
Two-photon polymerization (TPP) is promising method for additively manufacturing nanoscale structure...
Two photon polymerization (TPP) is an additive manufacturing technology that creates nano- and micro...
We present new methods to produce polymerized nanotips via two-photon photopolymerization. By gradua...
Based on re-polymerization between two structures close to each other, the feature-sizes of two-phot...
The influence of stiction on the minimum spacing between suspended nanorods fabricated by femtosecon...
Based on re-polymerization between two structures close to each other, the feature-sizes of two-phot...
We present experimental results on the changes of lines in two-photon photopolymerization microfabri...
Two-photon polymerization (2PP), which is a three-dimensional micro/nano-scale additive manufacturin...
Abstract Traditional lithography plays a significant role in the fabrication of micro- and nanostruc...
Two-photon polymerization enables the extremely high resolution three-dimensional printing of micro-...
The introduction of two-photon polymerization (TPP) into the area of Carbon Micro Electromechanical ...
International audienceIt is commonly accepted that a polymer matrix inside electrospun nanofibers is...
Material shrinkage commonly occurs in additive manufacturing during the phase transition of the prin...
International audienceStructures that change their shape in response to external stimuli unfold poss...
We report on the scaling laws of nanorods in two photon polymerization nanofabrication using a conti...
Two-photon polymerization (TPP) is promising method for additively manufacturing nanoscale structure...
Two photon polymerization (TPP) is an additive manufacturing technology that creates nano- and micro...
We present new methods to produce polymerized nanotips via two-photon photopolymerization. By gradua...
Based on re-polymerization between two structures close to each other, the feature-sizes of two-phot...
The influence of stiction on the minimum spacing between suspended nanorods fabricated by femtosecon...
Based on re-polymerization between two structures close to each other, the feature-sizes of two-phot...
We present experimental results on the changes of lines in two-photon photopolymerization microfabri...
Two-photon polymerization (2PP), which is a three-dimensional micro/nano-scale additive manufacturin...
Abstract Traditional lithography plays a significant role in the fabrication of micro- and nanostruc...
Two-photon polymerization enables the extremely high resolution three-dimensional printing of micro-...
The introduction of two-photon polymerization (TPP) into the area of Carbon Micro Electromechanical ...
International audienceIt is commonly accepted that a polymer matrix inside electrospun nanofibers is...
Material shrinkage commonly occurs in additive manufacturing during the phase transition of the prin...
International audienceStructures that change their shape in response to external stimuli unfold poss...