Academic Publication Connecting the Dots: Sintering of Liquid Metal Particles for Soft and Stretchable Conductors
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Malleable, printable, bondable, and highly conductive MXene/liquid metal plasticine with improved wettability
AbstractIntegration of functional fillers into liquid metals (LM) induces rheology modification, enabling the free-form shaping of LM at the micrometer scale. However, integrating non-chemically mo...
Multicolour stretchable perovskite electroluminescent devices for user-interactive displays
AbstractWearable displays require mechanical deformability to conform to the skin, as well as long-term stability, multicolour emission and sufficient brightness to enable practically useful applic...
Flexible solid-liquid bi-continuous electrically and thermally conductive nanocomposite for electromagnetic interference shielding and heat dissipation
No description provided.
Pressure-stamped stretchable electronics using a nanofibre membrane containing semi-embedded liquid metal particles
No description provided.
Robust liquid metal reinforced cellulose nanofiber/MXene composite film with Janus structure for electromagnetic interference shielding and electro-/photothermal conversion applications
No description provided.
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What is the core focus of the research titled 'Connecting the Dots: Sintering of Liquid Metal Particles for Soft and Stretchable Conductors'?
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What other academic literature is closely related to 'Connecting the Dots: Sintering of Liquid Metal Particles for Soft and Stretchable Conductors'?
Yes, highly correlated activity was mapped. An entry titled 'Malleable, printable, bondable, and highly conductive MXene/liquid metal plasticine with improved wettability' discusses this: AbstractIntegration of functional fillers into liquid metals (LM) induces rheology modification, enabling the free-form shaping of LM at the microm...
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