In this study we revisit experiments by Sethuraman et al. [J. Power Sources, 195, 5062 (2010)] on the stress evolution during the lithiation/delithiation cycle of a thin film of amorphous silicon. Based on recent work that show a two-phase process of lithiation of amorphous silicon, we formulate a phase-field model coupled to elasticity in the framework of Larché-Cahn. Using an adaptive nonlinear multigrid algorithm for the finite-volume discretization of this model, our two-dimensional numerical simulations show the formation of a sharp phase boundary between the lithiated and the amorphous silicon that continues to move as a front through the thin layer. We show that our model captures the non-monotone stress loading curve and rate dependenc...
To realise the promise of solid-state batteries, negative electrode materials exhibiting large volum...
To realise the promise of solid-state batteries, negative electrode materials exhibiting large volum...
Stress due to Li insertion has been considered as a major driving force for the mechanical degradati...
In this study we revisit experiments by Sethuraman et al. [J. Power Sources, 195, 5062 (2010)] on th...
In this study, we revisit experiments by Sethuraman et al. (2010 J. Power Sources, 195, 5062–5066. (...
AbstractThe massive cracking of silicon thin film electrodes in lithium ion batteries is associated ...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery (LIB...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery (LIB...
This work aims to review and understand the behavior of the electrochemical lithiation onset of amor...
A fundamental understanding of mechanical behavior of a Li–Si system is necessary to address the poo...
We have performed a number of experiments to examine the mechanical behavior of amorphous silicon -e...
Lithium-ion (Li-ion) batteries are critically important for portable electronics, electric vehicles,...
In this study we present a phase-field model that describes the process of intercalation of Li ions ...
Rechargeable Li-ion batteries operate by cyclically inserting lithium into, and extracting lithium f...
Lithiation-induced plasticity is a key factor that enables Si electrodes to maintain long cycle life...
To realise the promise of solid-state batteries, negative electrode materials exhibiting large volum...
To realise the promise of solid-state batteries, negative electrode materials exhibiting large volum...
Stress due to Li insertion has been considered as a major driving force for the mechanical degradati...
In this study we revisit experiments by Sethuraman et al. [J. Power Sources, 195, 5062 (2010)] on th...
In this study, we revisit experiments by Sethuraman et al. (2010 J. Power Sources, 195, 5062–5066. (...
AbstractThe massive cracking of silicon thin film electrodes in lithium ion batteries is associated ...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery (LIB...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery (LIB...
This work aims to review and understand the behavior of the electrochemical lithiation onset of amor...
A fundamental understanding of mechanical behavior of a Li–Si system is necessary to address the poo...
We have performed a number of experiments to examine the mechanical behavior of amorphous silicon -e...
Lithium-ion (Li-ion) batteries are critically important for portable electronics, electric vehicles,...
In this study we present a phase-field model that describes the process of intercalation of Li ions ...
Rechargeable Li-ion batteries operate by cyclically inserting lithium into, and extracting lithium f...
Lithiation-induced plasticity is a key factor that enables Si electrodes to maintain long cycle life...
To realise the promise of solid-state batteries, negative electrode materials exhibiting large volum...
To realise the promise of solid-state batteries, negative electrode materials exhibiting large volum...
Stress due to Li insertion has been considered as a major driving force for the mechanical degradati...