Updated
Updated · Nature.com · Sep 9
Researchers Introduce 20,000-dpi Deep-Foam Photolithography for Biomimetic Printing
Updated
Updated · Nature.com · Sep 9

Researchers Introduce 20,000-dpi Deep-Foam Photolithography for Biomimetic Printing

2 articles · Updated · Nature.com · Sep 9

Summary

  • A new deep-foam photolithography process uses UV-A light to foam photosensitized polymer films through their full depth, creating patterned structures on both films and fibers.
  • About 20,000 dots per inch of resolution lets the method print inkless white and greyscale images and even generate diffractive color by controlling pore formation and collapse.
  • The process also produces high-aspect-ratio foams up to 20x and hierarchically rough surfaces with lotus-like superhydrophobicity, expanding it beyond imaging into functional surface engineering.
  • Tests across amorphous and semi-crystalline polymers showed tunable local foamability, wettability, optical properties and thickness, enabling microfluidic channels and picolitre-scale capture of liquids and colloids.
  • The work positions foam-forming photopolymers as a biomimetic manufacturing platform that combines printing, fluid handling and surface design in a single light-driven process.

Insights

How does combining UV light and weak solvents transform ordinary plastics into 20,000 dpi ink-free structural colors?
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