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首页> 外文期刊>Advanced energy materials >Mixed Metal Difluorides as High Capacity Conversion-Type Cathodes: Impact of Composition on Stability and Performance
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Mixed Metal Difluorides as High Capacity Conversion-Type Cathodes: Impact of Composition on Stability and Performance

机译:混合金属二氟化物作为高容量转化型阴极:组成对稳定性和性能的影响

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摘要

With the most recent development of ultrahigh capacity anodes, such as Li- or Si-based anodes, metal fluorides hold promise as complementary high-capacity conversion cathode materials for next-generation energy storage devices. Despite their higher theoretical energy density compared to cells with sulfur cathodes, these materials have received dramatically less attention and little is understood about the origins of their electrochemical behavior. Here, the successful methodology to produce highly uniform size-controlled mixed metal difluoride nanocomposites is reported. It is discovered that such materials undergo reduction in a single step with a reduction potential intermediate to those for the corresponding single-metal difluorides and that a solid solution is reformed upon charging, which is advantageous for practical applications. For the first time the progressive formation of metal trifluorides upon repeated cycling of difluorides is reported. Systematic electrochemical measurements in combination with postmortem analyses lead to the conclusion that the cathode stability strongly depends on the ability to prevent formation and growth of a resistive cathode solid electrolyte interphase, which, in turn, strongly depends on the metal composition. This methodology and new findings will help to elucidate a path to developing metal fluoride-based commercial Li-ion batteries and provide guidelines for material selection.
机译:随着超高容量阳极(例如基于Li或Si的阳极)的最新发展,金属氟化物有望成为下一代储能设备的补充高容量转换阴极材料。尽管与具有硫阴极的电池相比,它们的理论能量密度更高,但这些材料受到的关注却大大减少,并且人们对其电化学行为的起源了解甚少。在此,报道了成功的方法来生产高度均匀的尺寸受控的混合金属二氟化物纳米复合材料。已经发现,这种材料在一步中以相对于相应的单金属二氟化物的还原电位为中间的还原电势进行还原,并且在充电时重整固溶体,这对于实际应用是有利的。首次报道了在重复循环二氟化物后逐步形成三氟化金属。系统的电化学测量与事后分析相结合得出的结论是,阴极稳定性在很大程度上取决于防止电阻性阴极固体电解质中间相形成和生长的能力,而后者又在很大程度上取决于金属成分。这种方法和新发现将有助于阐明开发基于金属氟化物的商用锂离子电池的途径,并为材料选择提供指导。

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