We introduce a coarse-grained simulation model for the reductive deposition of lithium cations in secondary lithium metal batteries. The model accounts for the heterogeneous and nonequilibrium nature of the electrodeposition dynamics, and it enables simulation of the long timescales and lengthscales associated with metal dendrite formation. We investigate the effects of applied overpotential and material properties on early-stage dendrite formation, as well as the molecular mechanisms that govern this process. The model confirms that dendrite formation propensity increases with the applied electrode overpotential, and it demonstrates that application of the electrode overpotential in time-dependent pulses leads to dramatic suppression of de...
The main obstacle to the development of the next-generation Li-based batteries is the formation of L...
The use of a lithium-metal anode in both current and future battery technologies, including lithium-...
The dendritic structure is a disastrous problem of lithium metal batteries as well as other metal re...
We introduce a coarse-grained simulation model for the reductive deposition of lithium cations in se...
Short-circuiting via dendrites compromises the reliability of Li-metal batteries. Dendrites ensue fr...
Lithium is an attractive battery anode material due to its potential for high- energy- d. storage ap...
Short-circuiting via dendrites compromises the reliability of Li-metal batteries. Dendrites ensue fr...
The ramified and stochastic evolution of dendritic microstructures has been a major issue on the saf...
Dendrite growth is a long-standing challenge that has limited the applications of rechargeable lithi...
We report experiments and molecular dynamics calculations on the kinetics of electrodeposited lithiu...
A physics-based, multiscale framework is presented to describe the degradation in rechargeable lithi...
Batteries that utilize lithium metal for the anode material offer high energy d. and promise new tec...
Dendrite formation on the electrode surface of high energy density batteries, such as lithium (Li) b...
Here, we report a new charge protocol for dendrite-free Li-metal battery based on the understanding ...
Lithium batteries have been widely used, but the growth of lithium dendrites does lead to some hazar...
The main obstacle to the development of the next-generation Li-based batteries is the formation of L...
The use of a lithium-metal anode in both current and future battery technologies, including lithium-...
The dendritic structure is a disastrous problem of lithium metal batteries as well as other metal re...
We introduce a coarse-grained simulation model for the reductive deposition of lithium cations in se...
Short-circuiting via dendrites compromises the reliability of Li-metal batteries. Dendrites ensue fr...
Lithium is an attractive battery anode material due to its potential for high- energy- d. storage ap...
Short-circuiting via dendrites compromises the reliability of Li-metal batteries. Dendrites ensue fr...
The ramified and stochastic evolution of dendritic microstructures has been a major issue on the saf...
Dendrite growth is a long-standing challenge that has limited the applications of rechargeable lithi...
We report experiments and molecular dynamics calculations on the kinetics of electrodeposited lithiu...
A physics-based, multiscale framework is presented to describe the degradation in rechargeable lithi...
Batteries that utilize lithium metal for the anode material offer high energy d. and promise new tec...
Dendrite formation on the electrode surface of high energy density batteries, such as lithium (Li) b...
Here, we report a new charge protocol for dendrite-free Li-metal battery based on the understanding ...
Lithium batteries have been widely used, but the growth of lithium dendrites does lead to some hazar...
The main obstacle to the development of the next-generation Li-based batteries is the formation of L...
The use of a lithium-metal anode in both current and future battery technologies, including lithium-...
The dendritic structure is a disastrous problem of lithium metal batteries as well as other metal re...