Perspective on gallium-based room temperature liquid metal batteries

Z Xing, J Fu, S Chen, J Gao, R Zhao, J Liu - Frontiers in Energy, 2022 - Springer
Recent years have witnessed a rapid development of deformable devices and epidermal
electronics that are in urgent request for flexible batteries. The intrinsically soft and ductile …

Room‐Temperature Liquid Metals for Flexible Electronic Devices

G Lu, E Ni, Y Jiang, W Wu, H Li - Small, 2024 - Wiley Online Library
Room‐temperature gallium‐based liquid metals (RT‐GaLMs) have garnered significant
interest recently owing to their extraordinary combination of fluidity, conductivity …

Muscle fibers inspired electrospun nanostructures reinforced conductive fibers for smart wearable optoelectronics and energy generators

L Veeramuthu, CJ Cho, M Venkatesan, HY Hsu… - Nano Energy, 2022 - Elsevier
Bioinspired muscle fiber–based wearable electronics are a breakthrough in the production
of lightweight, mechanically robust next-generation smart textiles. To meet the urgent …

A laminated gravity‐driven liquid metal‐doped hydrogel of unparalleled toughness and conductivity

Q Zhang, H Lu, G Yun, L Gong, Z Chen… - Advanced Functional …, 2024 - Wiley Online Library
Conductive hydrogels have been promising candidates for wearable and flexible electronics
due to their high flexibility and biocompatibility. However, the previously reported hydrogels …

Liquid metal microgels for three-dimensional printing of smart electronic clothes

P Wu, J Fu, Y Xu, Y He - ACS Applied Materials & Interfaces, 2022 - ACS Publications
Gallium-based liquid metals (LMs), with the combination of liquid fluidity and metallic
conductivity, are considered ideal conductive components for flexible electronics. However …

Ultrasonic‐Enabled Nondestructive and Substrate‐Independent Liquid Metal Ink Sintering

S Liu, Z Xu, G Li, Z Li, Z Ye, Z Xu, W Chen… - Advanced …, 2023 - Wiley Online Library
Printing or patterning particle‐based liquid metal (LM) ink is a good strategy to overcome
poor wettability of LM for its circuits' preparation in flexible and printed electronics …

Recyclable conductive nanoclay for direct in situ printing flexible electronics

P Wu, Z Wang, X Yao, J Fu, Y He - Materials Horizons, 2021 - pubs.rsc.org
Liquid-metal (LM)-based flexible and stretchable electronics have attracted widespread
interest in wearable health monitoring, electronic skins, and soft robotics. However, it is …

Reshapeable, rehealable and recyclable sensor fabricated by direct ink writing of conductive composites based on covalent adaptable network polymers

X He, Y Lin, Y Ding, AM Abdullah, Z Lei… - … Journal of Extreme …, 2021 - iopscience.iop.org
Covalent adaptable network (CAN) polymers doped with conductive nanoparticles are an
ideal candidate to create reshapeable, rehealable, and fully recyclable electronics. On the …

[HTML][HTML] Self-Limited ultraviolet laser sintering of liquid metal particles for μm-Thick flexible electronics devices

D Ye, Z Peng, J Liu, YA Huang - Materials & Design, 2022 - Elsevier
Lightweight, deformable and highly conductive conductors are rather appealing in flexible
electronics devices such as electromagnetic interference (EMI) shielding films; however, the …

[HTML][HTML] Integrating high-performance flexible wires with strain sensors for wearable human motion detection

P Wu, H He - Sensors, 2024 - mdpi.com
Flexible electronics have revolutionized the field by overcoming the rigid limitations of
traditional devices, offering superior flexibility and adaptability. Conductive ink performance …