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Sub-50 nm Surface Nanopatterning via Nano-Seed-Assisted Stereolithography
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- Title
- Sub-50 nm Surface Nanopatterning via Nano-Seed-Assisted Stereolithography
- Issued Date
- 2026-07
- Citation
- SMALL STRUCTURES, v.7, no.7
- Type
- Article
- Author Keywords
- 3D printing ; nanopatterning ; nano-seed templates ; stereolithography ; sub-50 nm features
- ISSN
- 2688-4062
- Abstract
-
Three-dimensional (3D) printing based on stereolithography (SLA) enables microstructured objects, but sub-100 nm surface resolution remains difficult because of photopolymerization and resin diffusion. Here, we present a nano-seed-assisted SLA method for integrating sub-50 nm surface nanopatterns with 3D-printed structures. Si master molds with diverse nanoscale geometries are replicated into polymethyl methacrylate (PMMA) nano-seed templates, enabling controlled resin infiltration and high-fidelity pattern transfer from 250 nm to micrometer scales, including dots, holes, waves, and crosses. A conformal ultrathin inorganic barrier layer, such as platinum (Pt) or Ga2O3, suppresses resin-polymer intermixing, confines curing at the interface, and preserves pattern integrity. The method yields uniform sub-50 nm nanopatterns over chip-scale and larger areas up to 45 & times; 75 mm, verified by high-resolution TEM and elemental mapping. It integrates decorative or functional nanopatterns with complex 3D objects, exemplified by a 3D-printed Buddha sculpture. In addition to the hybrid assembly of separately prepared nanopatterned inserts, we further demonstrate the direct fabrication of a monolithic Buddha structure containing a localized nano-seed-derived patterned region, confirming that nanoscale surface ornamentation can be incorporated during the SLA printing process without requiring post-print assembly. Overall, nano-seed-assisted SLA offers a scalable route to high-resolution nanostructuring in 3D-printed materials.
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- Publisher
- WILEY-V C H VERLAG GMBH
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Related Researcher
- Lee, Min Sun이민선
-
Department of Electrical Engineering and Computer Science
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