Liquid Metal Percolation

Liquid metal percolation is the formation of a continuous, electrically conductive network when liquid metal flows through or between components in a composite or porous structure. As the metal content increases beyond a percolation threshold, droplets or channels connect, sharply reducing electrical resistance while retaining fluidity and deformability. In engineering, this behavior supports stretchable conductors, reconfigurable circuits, soft sensors, thermal interfaces, and self-healing electronic materials. Performance depends on factors such as metal distribution, interfacial tension, confinement, and applied pressure or strain, making percolation a useful framework for designing adaptable electrical and thermal systems.

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JoVE Journal - Engineering

Ultrasound Velocity Measurement in a Liquid Metal Electrode

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Cited by 14 •

2015

Ultrasound velocimetry is used to study mixing by fluid flow in liquid metal electrodes. The focus of this manuscript is to illustrate the methods used for making precise, spatially-resolved ultrasound measurements while limiting oxidation and controlling and monitoring temperature, applied current, and the heater power being supplied.

A Method to Manipulate Surface Tension of a Liquid Metal via Surface Oxidation and Reduction

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Cited by 12 •

2016

We present a method to control the interfacial energy of a liquid metal in an electrolyte via electrochemical deposition (or removal) of a surface oxide layer. This simple method can control the capillary behavior of gallium-based liquid metals by tuning the interfacial energy rapidly, significantly, and reversibly using modest voltages.

Preparation of Liquid-exfoliated Transition Metal Dichalcogenide Nanosheets with Controlled Size and Thickness: A State of the Art Protocol

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Cited by 38 •

2016

A protocol for the liquid exfoliation of layered materials to nanosheets, their size selection and size measurement by microscopic and spectroscopic techniques is presented.

Generation of Scalable, Metallic High-Aspect Ratio Nanocomposites in a Biological Liquid Medium

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Cited by 13 •

2015

Here we present a protocol to synthesize novel, high-aspect ratio biocomposites under biological conditions and in liquid media. The biocomposites scale from nanometers to micrometers in diameter and length, respectively. Copper nanoparticles (CNPs) and copper sulfate combined with cystine are the key components for the synthesis.

Production of Metal Nanoparticles by Pulsed Laser-ablation in Liquids: A Tool for Studying the Antibacterial Properties of Nanoparticles

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Cited by 14 •

2017

The antimicrobial properties of metals such as copper and silver have been recognized for centuries. This protocol describes pulsed laser-ablation in liquids, a method of synthesizing metal nanoparticles that provides the ability to fine tune the properties of these nanoparticles to optimize their antimicrobial effects.

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