The state of understanding of the lithium-ion-battery graphite solid electrolyte interphase (SEI) and its relationship to formation cycling
Состояние понимания твердого электролитного интерфейса (SEI) графитового анода в литий‑ионных аккумуляторах и его связь с циклованием при формировании
2016-04-10
SCID: 54.1/mtwehm3q
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SEI formationelectrolyte compositionformation cyclinggraphite solid electrolyte interphaseinitial capacity loss
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Abstract (AI)
An in-depth historical and current review is presented on the science of lithium-ion battery (LIB) solid electrolyte interphase (SEI) formation on the graphite anode, including structure, morphology, composition, electrochemistry, and formation mechanism. During initial LIB operation, the SEI layer forms on the graphite surfaces, the most common anode material. The SEI is essential to the long-term performance of LIBs, and it also has an impact on its initial capacity loss, self-discharge characteristics, rate capability, and safety. While the presence of the anode SEI is vital, it is difficult to control its formation and growth, as they depend on several factors. These factors include the type of graphite, electrolyte composition, electrochemical conditions, and temperature. Thus, SEI formation and electrochemical stability over long-term operation should be a primary topic of future investigation in the LIB development. This article covers the progression of knowledge regarding the SEI, from its discovery in 1979 to the current state of understanding, and covers differences in the chemical and structural makeup when cell materials and components are varied. It also discusses the relationship of the SEI layer to the LIB formation step, involving both electrolyte wetting and subsequent slow charge–discharge cycles to grow the SEI.
Key Findings
1
Control of SEI formation and growth is difficult because it depends on graphite type, electrolyte composition, electrochemical conditions, and temperature.
2
SEI affects initial capacity loss, self-discharge, rate capability, and safety of lithium-ion batteries.
3
SEI chemical and structural makeup varies with changes in cell materials and components, as documented from 1979 to present.
4
The LIB formation step (electrolyte wetting followed by slow charge–discharge cycles) is directly related to SEI growth and stability and should be prioritized in future research.
5
The SEI layer forms on graphite anodes during initial LIB operation and is essential for long-term battery performance.
Research Object
Solid electrolyte interphase (SEI) formed on graphite anodes in lithium-ion batteries
Research Subject
Structure, morphology, composition, formation mechanism and electrochemical stability of the graphite-anode SEI and its relationship to battery formation cycling (initial wetting and slow charge–discharge cycles) affecting capacity loss, self-discharge, rate capability and safety
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2016-04-10
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