We report a facile soft lithography (SL) technique that allows fabrication of patterned polymeric surfaces with feature height varying between 0 and <i>h</i><sub>0</sub>, using a single stamp. The method relies on the partial relaxation of the applied stress in a viscoelastic polymer thin film imprinted under a transient external load using a flexible stamp. The applicability of the technique is demonstrated for thermosetting (rubbery) as well as thermoplastic (glassy) polymers over a wide range of lateral dimensions. The lateral dimension and the periodicity of imprinted patterns remain identical to that of the original stamp. The method has potential applications in creating templates for performing combinatorial experiments related to we...
Soft nanoimprint lithography (soft NIL) relies on a mechanical deformation of a resist by a patterne...
International audienceIn this paper, we address the reflow behavior of polymer thin films, focusing ...
12th International Manufacturing Conference in China, September 21-23, 2006, Xi'an, ChinaIn this pap...
We report a simple method for creating a nanopatterned surface with continuous variation in feature ...
This is a brief review of our recent and ongoing work on simple, rapid, room temperature, pressure-l...
The surface of a soft elastic film becomes unstable and deforms when a rigid flat plate is brought i...
We report a simple yet robust and reproducible technique to create surface patterns with submicromet...
We report a simple yet robust and reproducible technique to create surface patterns with submicromet...
We report a simple, rapid, room temperature, pressure-less and large area (∼cm2) imprinting techniqu...
The surface of a soft elastic film becomes unstable and forms a labyrinth pattern when a rigid flat ...
The surface of a soft elastic film becomes unstable and forms a labyrinth pattern when a rigid flat ...
This is a brief review of our recent and ongoing work on simple, rapid, room temperature, pressure-l...
Abstract. This is a brief review of our recent and ongoing work on simple, rapid, room temperature, ...
International audienceIn conventional nanoimprint lithography, relatively high pressures and high te...
We are developing a high-resolution printing technique based on transferring a pattern from an elast...
Soft nanoimprint lithography (soft NIL) relies on a mechanical deformation of a resist by a patterne...
International audienceIn this paper, we address the reflow behavior of polymer thin films, focusing ...
12th International Manufacturing Conference in China, September 21-23, 2006, Xi'an, ChinaIn this pap...
We report a simple method for creating a nanopatterned surface with continuous variation in feature ...
This is a brief review of our recent and ongoing work on simple, rapid, room temperature, pressure-l...
The surface of a soft elastic film becomes unstable and deforms when a rigid flat plate is brought i...
We report a simple yet robust and reproducible technique to create surface patterns with submicromet...
We report a simple yet robust and reproducible technique to create surface patterns with submicromet...
We report a simple, rapid, room temperature, pressure-less and large area (∼cm2) imprinting techniqu...
The surface of a soft elastic film becomes unstable and forms a labyrinth pattern when a rigid flat ...
The surface of a soft elastic film becomes unstable and forms a labyrinth pattern when a rigid flat ...
This is a brief review of our recent and ongoing work on simple, rapid, room temperature, pressure-l...
Abstract. This is a brief review of our recent and ongoing work on simple, rapid, room temperature, ...
International audienceIn conventional nanoimprint lithography, relatively high pressures and high te...
We are developing a high-resolution printing technique based on transferring a pattern from an elast...
Soft nanoimprint lithography (soft NIL) relies on a mechanical deformation of a resist by a patterne...
International audienceIn this paper, we address the reflow behavior of polymer thin films, focusing ...
12th International Manufacturing Conference in China, September 21-23, 2006, Xi'an, ChinaIn this pap...