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Relationship between Silicon Percentage in Graphite Anode to Achieve High-Energy-Density Lithium-Ion Batteries
High-weight-percentage silicon (Si) in graphite (Gr) anodes face commercialization hurdles
due to fundamental and interrelated challenges. Nevertheless, using the existing …
due to fundamental and interrelated challenges. Nevertheless, using the existing …
Unveiling the Interplay Between Silicon and Graphite in Composite Anodes for Lithium‐Ion Batteries
Si provides an effective approach to achieving high‐energy batteries owing to its high
energy density and abundance. However, the poor stability of Si requires buffering with …
energy density and abundance. However, the poor stability of Si requires buffering with …
New perspectives on spatial dynamics of lithiation and lithium plating in graphite/silicon composite anodes
J Tao, L Liu, J Han, J Peng, Y Chen, Y Yang… - Energy Storage …, 2023 - Elsevier
Huge volume expansion, unstable SEI-film evolution and uncontrollable Li plating remain
challenging issues for achieving high energy-density and fast charging graphite/silicon …
challenging issues for achieving high energy-density and fast charging graphite/silicon …
A mechanistic and quantitative understanding of the interactions between SiO and graphite particles
SiO, comprised of silicon and silicon dioxides (SiO2), is one of the most commercially
promising anode materials to mix with current widely used graphite for the high energy …
promising anode materials to mix with current widely used graphite for the high energy …
Charge Dynamics Induced by Lithiation Heterogeneity in Silicon‐Graphite Composite Anodes
CL Berhaut, M Mirolo, DZ Dominguez… - Advanced Energy …, 2023 - Wiley Online Library
The reaction processes in Li‐ion batteries can be highly heterogeneous at the electrode
scale, leading to local deviations in the lithium content or local degradation phenomena. To …
scale, leading to local deviations in the lithium content or local degradation phenomena. To …
Toward a fundamental understanding of the heterogeneous multiphysics behaviors of silicon monoxide/graphite composite anodes
Abstract Silicon monoxide (SiO)(silicon [Si] mixed with silicon dioxide [SiO2])/graphite (Gr)
composite material is one of the most commercially promising anode materials for the next …
composite material is one of the most commercially promising anode materials for the next …
Root‐Growth‐Inspired Self‐Morphology‐Evolution of Microsized Bismuth Surrounded by Microsized Hard Carbon for Stabilized Sodium‐Ion Storage
Z Fang, S Fan, Z Yan, D Tang, X Gao… - Advanced …, 2025 - Wiley Online Library
Alloy‐type materials are desirable for high‐energy sodium‐ion batteries. Different from
nanoengineering with pre‐reserving void space and confined carbon coatings, microsized …
nanoengineering with pre‐reserving void space and confined carbon coatings, microsized …
[HTML][HTML] Unveiling the role of electrode-level heterogeneity alleviated in a silicon-graphite electrode under operando microscopy
Reaction heterogeneity is a crucial factor that influences the design of composite electrodes.
Silicon–graphite composites exhibit practical use as anodes, but the complex mechanisms …
Silicon–graphite composites exhibit practical use as anodes, but the complex mechanisms …
Conductive polymer frameworks in silicon anodes for advanced lithium-ion batteries
Silicon anode is endowed with a high theoretical specific capacity. Unfortunately, its
applicability in lithium-ion batteries is hindered by several inevitable problems, which are …
applicability in lithium-ion batteries is hindered by several inevitable problems, which are …
Effect of different charge rates on the active material lithiation of Gr/SiOx blend anodes in lithium-ion cells
Anodes with blended active materials, containing SiOx as a secondary material in addition
to graphite, gain interest in research and commercial applications to increase the capacity of …
to graphite, gain interest in research and commercial applications to increase the capacity of …