Multiscale, hierarchically patterned surfaces, such as lotus leaves, butterfly wings, adhesion pads of gecko lizards are abundantly found in nature, where microstructures are usually used to strengthen the mechanical stability while nanostructures offer the main functionality, i.e., wettability, structural color, or dry adhesion. To emulate such hierarchical structures in nature, multiscale, multilevel patterning has been extensively utilized for the last few decades towards various applications ranging from wetting control, structural colors, to tissue scaffolds. In this review, we highlight recent advances in scalable multiscale patterning to bring about improved functions that can even surpass those found in nature, with particular focus...
Various life forms in nature display a high level of adaptability to their environments through the ...
The ability to fabricate materials, structures, devices, and systems with nanometer-scale precision ...
The ability to fabricate materials, structures, devices, and systems with nanometer-scale precision ...
In the course of evolution nature has arrived at startling materials solutions to ensure survival. ...
In the course of evolution nature has arrived at startling materials solutions to ensure survival. I...
My PhD work focuses on developing new methods to create the macroscopic patterns in a simple, robust...
In this thesis, we used CMOS-like technologies to produce improved, hierarchical multifunctional bio...
We present a simple method of fabricating bio-inspired multiscale structure by combining replica mol...
Defence is held on 4.2.2022 15:00 – 18:00 https://aalto.zoom.us/j/64161649189The self-assembly of...
Herein, a simple hierarchical surface patterning method is presented by effectively combining buckli...
A simple method for fabricating micro/nanoscale hierarchical structures is presented using a two-ste...
DoctorIn nature, the extraordinary properties and functions of biological systems always give us a n...
Naturally occurring patterns on surfaces have evolved to form topological micro- and nanostructures ...
Herein, a simple hierarchical surface patterning method is presented by effectively combining buckli...
et al.Patterned surfaces with tunable wetting properties are described. A hybrid hierarchical surfac...
Various life forms in nature display a high level of adaptability to their environments through the ...
The ability to fabricate materials, structures, devices, and systems with nanometer-scale precision ...
The ability to fabricate materials, structures, devices, and systems with nanometer-scale precision ...
In the course of evolution nature has arrived at startling materials solutions to ensure survival. ...
In the course of evolution nature has arrived at startling materials solutions to ensure survival. I...
My PhD work focuses on developing new methods to create the macroscopic patterns in a simple, robust...
In this thesis, we used CMOS-like technologies to produce improved, hierarchical multifunctional bio...
We present a simple method of fabricating bio-inspired multiscale structure by combining replica mol...
Defence is held on 4.2.2022 15:00 – 18:00 https://aalto.zoom.us/j/64161649189The self-assembly of...
Herein, a simple hierarchical surface patterning method is presented by effectively combining buckli...
A simple method for fabricating micro/nanoscale hierarchical structures is presented using a two-ste...
DoctorIn nature, the extraordinary properties and functions of biological systems always give us a n...
Naturally occurring patterns on surfaces have evolved to form topological micro- and nanostructures ...
Herein, a simple hierarchical surface patterning method is presented by effectively combining buckli...
et al.Patterned surfaces with tunable wetting properties are described. A hybrid hierarchical surfac...
Various life forms in nature display a high level of adaptability to their environments through the ...
The ability to fabricate materials, structures, devices, and systems with nanometer-scale precision ...
The ability to fabricate materials, structures, devices, and systems with nanometer-scale precision ...