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Interpreting Abnormal Charge-Discharge Plateau Migration in CuxS during Long-Term Cycling

机译:在长期循环期间解释CUX中的异常电荷 - 放电平台迁移

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摘要

Voltage polarization during cycling, the charge potential increase of anode or discharge plateau decrease of cathode, is widely observed and would lower the output voltage. Conversely, an anomalous potential plateau negative migration phenomenon was observed in CuxS anode of sodium-ion battery. In this study, the background mechanism was clarified from the switch of intercalation-conversion reactions and structure evolution. The dynamic cooperation between intercalation and conversion reactions may root the potential plateau negative migration during cycling. In the initial stage, the intercalation-type reaction with Na3Cu4S4 and Na4Cu2S3 products at 2.13 and 1.92 V would dominate the early migration process of potential plateaus. In the second stage, the conversion-type reaction dominated by Na2S and metallic copper formed at 1.85 and 1.53 V in the later period. The aforementioned results would provide new perspective on the electrochemical behavior of transition-metal sulfide anode and provide a clue for reducing voltage polarization.
机译:循环期间的电压偏振,广泛观察到阴极的阳极或放电平台降低的电位电位增加,并将降低输出电压。相反,在钠离子电池的Cuxs阳极中观察到异常的潜在平台负迁移现象。在该研究中,从插层转换反应和结构演化的开关澄清了背景机构。插层和转化反应之间的动态合作可以在循环期间潜在的高原负面迁移。在初始阶段,在2.13和1.92V下与Na3Cu4S4和Na4Cu2S3产品的插入式反应将主导潜在平稳的早期迁移过程。在第二阶段,在后期在1.85和1.53V下形成的Na 2 S和金属铜中的转化型反应。上述结果将为过渡金属硫化物阳极的电化学行为提供新的视角,并提供用于降低电压偏振的线索。

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