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Updated: Mar 9, 2026

Applying Permanent, Robust Stenciled Patterns of Fine Particles to Elastomeric Surfaces
Published on: July 8, 2025
Ultrafine Pitch Stencil Printing of Liquid Metal Alloys
Nathan Lazarus1, Sarah S Bedair1, Iain M Kierzewski2
1U.S. Army Research Laboratory , 2800 Powder Mill Road, Adelphi, Maryland 20783, United States.
Abstract:
With high conductivity and stretchable for large cross-sections, liquid metals such as galinstan are promising for creating stretchable devices and interconnects. Creating high resolution features in parallel is challenging, with most techniques limited to a hundred micrometers or more. In this work, multilevel electroplated stencils are investigated for printing liquid metals, with galinstan features as small as ten micrometers printed on soft elastomers, a factor of 10 reduction over past liquid metal stencil printing. Capacitors and resistive strain sensors are also demonstrated, showing the potential for creating stretchable conductors and devices.

