MRS Meetings and Events

 

SB03.04.08 2022 MRS Fall Meeting

Rapid Meniscus-Guided Printing of Stable Semi-Solid-State Liquid Metal Microgranular-Particle for Soft Electronics

When and Where

Nov 29, 2022
11:30am - 11:45am

Hynes, Level 1, Room 111

Presenter

Co-Author(s)

Gun-Hee Lee1

KAIST1

Abstract

Gun-Hee Lee1

KAIST1
Liquid metal is being regarded as a promising material for soft electronics owing to its distinct combination of high electrical conductivity comparable to that of metals and exceptional deformability derived from its liquid state. However, the applicability of liquid metal is still limited due to the difficulty in simultaneously achieving its mechanical stability and initial conductivity. Furthermore, reliable and rapid patterning of stable liquid metal directly on various soft substrates at high-resolution remains a formidable challenge. In this work, meniscus-guided printing of ink containing polyelectrolyte-attached liquid metal microgranular-particle in an aqueous solvent to generate semi-solid-state liquid metal is presented. Our liquid metal microgranular-particle printed in the evaporative regime is mechanically stable, initially conductive, and patternable down to 50 μm on various substrates. Demonstrations of the ultrastretchable (~500% strain) electrical circuit, customized e-skin, and zero-waste ECG sensor validate the simplicity, versatility, and reliability of this manufacturing strategy, enabling broad utility in the development of advanced soft electronics.

Keywords

additive manufacturing | ink-jet printing

Symposium Organizers

Lizhi Xu, The University of Hong Kong
Alex Chortos, Purdue University
Jia Liu, Harvard University
Alina Rwei, TU Delft

Symposium Support

Bronze
ChemComm
Journal of Materials Chemistry C
Science Robotics | AAAS

Publishing Alliance

MRS publishes with Springer Nature