A General Approach To Composites Containing Nonmetallic Fillers and Liquid Gallium

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GOLD

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Yes

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Abstract

We report a versatile method to make liquid metal composites by vigorously mixing gallium (Ga) with non-metallic particles of graphene oxide (G-O), graphite, diamond, and silicon carbide that display either paste or putty-like behavior depending on the volume fraction. Unlike Ga, the putty-like mixtures can be kneaded and rolled on any surface without leaving residue. By changing temperature, these materials can be stiffened, softened, and, for the G-O-containing composite, even made porous. The gallium putty (GalP) containing reduced G-O (rG-O) has excellent electromagnetic interference shielding effectiveness. GalP with diamond filler has excellent thermal conductivity and heat transfer superior to a commercial liquid metal-based thermal paste. Composites can also be formed from eutectic alloys of Ga including Ga-In (EGaIn), Ga-Sn (EGaSn), and Ga-In-Sn (EGaInSn or Galinstan). The versatility of our approach allows a variety of fillers to be incorporated in liquid metals, potentially allowing filler-specific fit for purpose materials.

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Keywords

Liquid gallium, Gallium, Gallium putty (GalP), Tin alloys, 621, Research Articles

Fields of Science

02 engineering and technology, 0210 nano-technology

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OpenCitations Citation Count
97

Volume

7

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1

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CrossRef : 58

Scopus : 98

PubMed : 13

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Mendeley Readers : 73

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