Results 171 to 180 of about 4,236 (208)
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Printing EGaIn nanodroplets out of liquid metal
Materials Letters, 2019Abstract We report a method to fabricate surfactant-free eutectic gallium-indium (EGaIn) sessile nanodroplets out of liquid metal. The method takes advantage of weak adherence between the liquid metal and its ultrathin surface oxide layer. During the van der Waals exfoliation process of transferring the ultrathin oxide layer to a desired substrate ...
Yujun Shi +3 more
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Reliable interfaces for EGaIn multi-layer stretchable circuits and microelectronics
Lab on a Chip, 2019Multi-layer on-skin EMG with integrated chips and EgaIn stretchable circuitry for stretchable electronics, bio-monitoring and human–machine interaction.
Daniel Green Marques +4 more
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Quantum interference in EGaIn based tunneling junctions
SPIE Proceedings, 2013In this report we discuss the great potential of Eutectic Gallium Indium (EGaIn) as conformal soft top electrode. EGaIn is a liquid eutectic supporting a skin (~ 1 nm-thick) of self-limiting oxide Ga2O3 as a non-damaging, conformal top-contact. In the last half of decade EGaIn has been used by several group to form molecular junctions and study charge ...
Fracasso, Davide, Chiechi, Ryan C.
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Flexible Liquid Metal Alloy (EGaIn) Microstrip Patch Antenna
IEEE Transactions on Antennas and Propagation, 2012This paper describes a flexible microstrip patch antenna that incorporates a novel multi-layer construction consisting of a liquid metal (eutectic gallium indium) encased in an elastomer. The combined properties of the fluid and the elastomeric substrate result in a flexible and durable antenna that is well suited for conformal antenna applications ...
G. J. Hayes +4 more
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A reconfigurable Yagi-Uda antenna using EGaIn liquid metal
2017 International Symposium on Antennas and Propagation (ISAP), 2017A reconfigurable Yagi-Uda with the liquid metal is proposed in this article. By a new electrochemical method for reversible, we control the length of liquid eutectic gallium indium (EGaIn) in the capillary. Electrochemical deposition (or explode) of a surface-oxide on the EGaIn significantly lowers (or increases) its tension to induce the liquid metal ...
Zhang He +5 more
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ACS Applied Materials & Interfaces, 2023
As an essential component of flexible electronics, superelastic conductive fibers with good mechanical and electrical properties have drawn significant attention, especially in their preparation. In this study, we prepared a superelastic conductive fiber composed of eutectic gallium-indium (EGaIn) and thermoplastic polyurethane (TPU) by simple wet ...
Jingyu Zhou +4 more
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As an essential component of flexible electronics, superelastic conductive fibers with good mechanical and electrical properties have drawn significant attention, especially in their preparation. In this study, we prepared a superelastic conductive fiber composed of eutectic gallium-indium (EGaIn) and thermoplastic polyurethane (TPU) by simple wet ...
Jingyu Zhou +4 more
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Multifunctional and flexible ZrO2-coated EGaIn nanoparticles for photothermal therapy
Nanoscale, 2019The nanoparticle not only formed a stable core–shell LM structure, but also maintained the ideal flexibility of the LM.
Na Xia +10 more
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Analysis of the Efficiency of Surfactant-Mediated Stabilization Reactions of EGaIn Nanodroplets
Langmuir, 2017A methodology based on light scattering and spectrophotometry was developed to evaluate the effect of organic surfactants on the size and yield of eutectic gallium/indium (EGaIn) nanodroplets formed in organic solvents by ultrasonication. The process was subsequently applied to systematically evaluate the role of headgroup chemistry as well as polar ...
Lauren R. Finkenauer +4 more
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High-efficiency photoacoustic transducers based on plasmonic EGaIn liquid metal nanoparticles
NanoscalePlasmonic LMNPs enhance light-acoustic conversion. Self-assembled nanogaps boost coupling. 5.1e-3 efficiency achieved (300 nm/120 μm), outperforming noble metals by 10–100×.
Cheng Luo +9 more
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Micromechanics modeling of multifunctional EGaIn-polymer composites
Nondestructive Characterization and Monitoring of Advanced Materials, Aerospace, Civil Infrastructure, and Transportation XVI, 2022Cerwyn Chiew, Mohammad H. Malakooti
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