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- W3048620116 abstract "In this work, we demonstrate the potential application of liquid metal galinstan as a means of carrying high currents between two collector electrodes. The room-temperature liquid metal was placed between two electrodes made either of stainless steel (SS) or of copper, where the electrical performance at applied currents as high as 250 A was monitored and found to be highly stable. The surface interaction between galinstan and the collector electrodes in the presence and absence of such high DC currents was also investigated. After 12 h of contact with Cu electrodes, analysis by X-ray diffraction and energy-dispersive X-ray experiments revealed the presence of Ga and Cu as well as evidence of very minor InSn phase separation from liquid galinstan to form a solid alloy. However, after the application of a DC current of 250 A for 12 h, extensive Cu–Ga alloy formation was observed in the form of CuGa2, as well as a more pronounced phase separation of the In and Sn components into islands of InSn. It was found that the slight temperature rise during electrical testing favored alloy formation but was not the origin of the phase separation of the In–Sn components. In contrast, analysis of the SS electrode after 24 h of an applied DC current of 250 A did not reveal any form of alloy formation. This work shows that the electrical performance of liquid metal galinstan is stable upon the application of high DC currents using two different contact materials even though the interaction with the contacts differs. In addition, this provides an interesting pathway that can be explored for alloy production using galinstan and Cu materials under the application of an applied current, which may have other uses apart from high-current-density carriers." @default.
- W3048620116 created "2020-08-18" @default.
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- W3048620116 date "2020-08-11" @default.
- W3048620116 modified "2023-09-26" @default.
- W3048620116 title "Investigating Liquid Metal Galinstan as a High Current Carrier and Its Interaction with Collector Electrodes" @default.
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- W3048620116 doi "https://doi.org/10.1021/acsaelm.0c00551" @default.
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