It is crucial to suppress lithium dendrite formation in lithium metal batteries. Formation of a good solid-electrolyte interphase (SEI) has been considered to be effective in limiting lithium dendrite growth. However, how the SEI may be modified during lithium deposition is hard to resolve due to challenges in in situ investigation of the SEI with fine details. We report an in situ study that uncovers the lithium dendrite suppression mechanism arising from SEI modification by a poly(diallyldimethylammonium chloride) (PDDA) cationic polymer film, using electrochemical liquid cell transmission electron microscopy (TEM). Lithium nanogranules are obtained in the presence of the polymer film. Chemical mapping of the deposits provides remarkable ...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Lithium dendrite formation is a major safety concern existing in Li-ion and Li-metal batteries. In s...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
The propensity of lithium to form nonplanar, mossy, or dendritic electrodeposits at current densitie...
The propensity of lithium to form nonplanar, mossy, or dendritic electrodeposits at current densitie...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
The solid electrolyte interphase (SEI), a complex layer that forms over the surface of electrodes ex...
Lithium metal has been considered the "holy grail" anode material for rechargeable batteries despite...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Lithium dendrite formation is a major safety concern existing in Li-ion and Li-metal batteries. In s...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
The propensity of lithium to form nonplanar, mossy, or dendritic electrodeposits at current densitie...
The propensity of lithium to form nonplanar, mossy, or dendritic electrodeposits at current densitie...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
The solid electrolyte interphase (SEI), a complex layer that forms over the surface of electrodes ex...
Lithium metal has been considered the "holy grail" anode material for rechargeable batteries despite...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Lithium dendrite formation is a major safety concern existing in Li-ion and Li-metal batteries. In s...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...