Multilevel Hierarchical Topographies by Combined Photolithography and Nanoimprinting Processes To Create Surfaces with Controlled Wetting

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Last updated 03 junho 2024
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Anisotropic Wetting of Micro–Micro Hierarchical Structures
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Continuous roller nanoimprinting: next generation lithography
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Impact of surface topography on the bacterial attachment to micro
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
A novel hardmask-to-substrate pattern transfer method for creating
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
a) AFM image of height profile of PEG nano-pillars. (b
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Manufacturing of nanostructures with high aspect ratios using soft
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Anisotropic Wetting of Micro–Micro Hierarchical Structures
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Laser field manipulation and laser damage resistance property of
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Color online) Two reasons are responsible for a partial exposure
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Impact of surface topography on the bacterial attachment to micro
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Biomimetics, Free Full-Text
Multilevel Hierarchical Topographies by Combined Photolithography and  Nanoimprinting Processes To Create Surfaces with Controlled Wetting
Multiscale patterning of a metallic glass using sacrificial

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