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Enhancing Electrical Conductivity of Stretchable Liquid Metal–Silver Composites through Direct Ink Writing

Wuzhou Zu, Hugo E. Carranza, Michael D. Bartlett

Year
2024
Citations
16
Access
Open access

Abstract

elongation, coalescence, and percolation of these multiphase inclusions during printing. These DIW printed filaments are conductive as fabricated and are soft (modulus as low as 1.1 MPa), stretchable (strain limit >800%), and show strain invariant conductivity up to 80% strain. These capabilities are demonstrated through a set of electromagnetic induction coils that can transfer power wirelessly through air and water, even under deformation. This work provides a methodology to program properties in stretchable conductors, where the combination of material composition and process parameters leads to greatly enhanced performance. This approach can find use in applications such as soft robots, soft electronics, and printed materials for deformable, yet highly functional devices.

Keywords

Materials scienceComposite materialInkwellElectrical resistivity and conductivityMetalLiquid metalConductivityMetallurgy

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