Related Experiment Video
Updated: Jan 26, 2026

Polymeric Microneedle Array Fabrication by Photolithography
Published on: November 17, 2015
Fabrication of polymeric dual-scale nanoimprint molds using a polymer stencil membrane
Junseo Choi1, Zheng Jia1, Sunggook Park1
1Mechanical & Industrial Engineering Department and NIH Center for BioModular Multiscale Systems for Precision Medicine Louisiana State University, Baton Rouge, LA 70803, USA.
Abstract:
We report on a simple and effective process that allows fabricating polymeric dual-scale nanoimprinting molds. The key for the process is the use of a thin flexible SU-8 stencil membrane, which was fabricated by either photolithography or thermal nanoimprint lithography (NIL). The stencil membrane with microscale pores was assembled into a nanopatterned substrate, producing a dual-scale structure. The assembled structure was used as a template to produce polymeric imprinting molds via UV-NIL. With this method, we demonstrated dual-scale nanoimprint molds having nano-pillars of 251 nm diameter and 146 nm high on top of microscale square protrusions of 5 μm wide and 3.6 μm high. The resin mold with the dual-scale structure was successfully used to produce a freestanding membrane with dual-scale perforated pores via UV-NIL. After metal coating and integrated into microfluidic devices, this freestanding membrane can potentially be used as a substrate for surface plasmon resonance sensors.
Related Concept Videos
Polymers
Polymers
pH Scale
Olefin Metathesis Polymerization: Ring-Opening Metathesis Polymerization (ROMP)
Actin Polymerization
The nucleation phase involves forming a stable nucleus consisting of three actin monomers to form a new actin filament. Actin-binding proteins such as formins and Arp2/3 complex help filament growth post-nucleation. The Formins form straight...
Scaling

