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A review of existing and emerging methods for lithium detection and characterization in Li‐ion and Li‐metal batteries
Whether attempting to eliminate parasitic Li metal plating on graphite (and other Li‐ion
anodes) or enabling stable, uniform Li metal formation in 'anode‐free'Li battery …
anodes) or enabling stable, uniform Li metal formation in 'anode‐free'Li battery …
Develo** extreme fast charge battery protocols–A review spanning materials to systems
Extreme fast charging (XFC) has become a focal research point in the lithium-battery
community over the last several years. As adoption of electric vehicles increases, fast …
community over the last several years. As adoption of electric vehicles increases, fast …
Interplay of lithium intercalation and plating on a single graphite particle
Improving safety while increasing the charging rates and extending the lifetime is the grand
challenge for lithium-ion batteries. The key challenge is to control lithium plating, a parasitic …
challenge for lithium-ion batteries. The key challenge is to control lithium plating, a parasitic …
Modeling the inhomogeneous lithium plating in lithium-ion batteries induced by non-uniform temperature distribution
Under fast-charging or low-temperature charging conditions, large-format lithium-ion
batteries are prone to inhomogeneous lithium plating, resulting in localized degradation and …
batteries are prone to inhomogeneous lithium plating, resulting in localized degradation and …
Correlating lithium plating quantification with thermal safety characteristics of lithium-ion batteries
Lithium plating is one of the most safety-critical side reactions in lithium-ion (Li-ion) batteries.
It is likely to occur under overcharge or fast-charge scenarios when the overwhelming Li-ion …
It is likely to occur under overcharge or fast-charge scenarios when the overwhelming Li-ion …
Operando video microscopy of Li plating and re-intercalation on graphite anodes during fast charging
Despite the demand for fast-charging lithium (Li)-ion batteries, high-energy-density batteries
with thick graphite anodes are limited by Li plating when charging at> 4C rates. In this work …
with thick graphite anodes are limited by Li plating when charging at> 4C rates. In this work …
Battery aging mode identification across NMC compositions and designs using machine learning
A comprehensive understanding of lithium-ion battery (LiB) lifespan is the key to designing
durable batteries and optimizing use protocols. Although battery lifetime prediction methods …
durable batteries and optimizing use protocols. Although battery lifetime prediction methods …
[HTML][HTML] Generalised diagnostic framework for rapid battery degradation quantification with deep learning
Diagnosing lithium-ion battery degradation is challenging due to the complex, nonlinear,
and path-dependent nature of the problem. Here, we develop a generalised and rapid …
and path-dependent nature of the problem. Here, we develop a generalised and rapid …
Operando detection of Li plating during fast charging of Li-ion batteries using incremental capacity analysis
A major challenge that limits fast charging of Li-ion batteries is lithium (Li) plating on the
graphite electrode. However, it remains challenging to detect and diagnose Li plating in …
graphite electrode. However, it remains challenging to detect and diagnose Li plating in …
A comprehensive understanding of the aging effects of extreme fast charging on high Ni NMC cathode
As the battery industry shifts toward high Ni content cathodes, such as LiNi0. 8Mn0. 1Co0.
1O2 [NMC811], a complete understanding of the degradation mechanisms of NMC811 …
1O2 [NMC811], a complete understanding of the degradation mechanisms of NMC811 …