材料科学
电极
金属
液态金属
冶金
复合材料
纳米技术
物理化学
化学
作者
Charles Borenstein,Brady G. Butler,James D. Paramore,K. T. Hartwig,Michael J. Demkowicz
标识
DOI:10.1002/adem.202500738
摘要
Metallic composites that remain stiff and retain their shape even though their majority phase is liquid are presented. Using X‐ray computed tomography, it is demonstrated that the solid minority phase forms a system‐spanning, load‐bearing skeleton: a behavior commonly observed in gels. Therefore, these novel composites are called “metallic gels.” To demonstrate their potential utility in liquid metal batteries (LMBs), galvanic cells are assembled with majority calcium (Ca) and bismuth (Bi) composite electrodes and iron (Fe) as the minority phase. At the operating temperature of these cells the majority phase is liquid, while the iron is solid. Conventional LMBs rely on gravitational segregation and low mutual solubility to maintain the arrangement of their electrodes and electrolyte. As a result, they cannot be reoriented, since that may cause layers to mix and short circuit. Unlike conventional LMBs, the cells can operate in a horizontal orientation without forming short circuits. Thus, metallic gel electrodes may circumvent the limitations of all‐liquid cells while retaining many of their benefits.
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