Lithium metal as a battery anode is one of the most promising energy storage materials owing to its high theoretical capacity and low working potential. However, uncontrollable Li growth during cycling raises safety issues in the battery due to dendrite formation and a poor coulombic reversibility. Here, a design involving carbon nanodots (CDs) as electrolyte additives is introduced, which could significantly improve the morphology of the Li plating and cycling stability of lithium-metal batteries (LMBs). These CDs are suitable electrolyte additives because they show good dispersibility against organic solvents, originating from their 2???5 nm small-sized particles. In addition, CDs include surface negative charges and various functional gr...
Lithium (Li) metal is the most ideal anode material in lithium ion batteries due to its large theore...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
Abstract Suppressing Li dendrite growth has gained research interest due to the high theoretical cap...
Uncontrolled dendrite formation in the high energy density of lithium (Li) metal batteries (LMBs) ma...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Lithium (Li) dendrite alleviation via three-dimensional (3D) structured current collectors has been ...
Conventional graphite faces theoretical capacity limitation, and conventional cells using graphite s...
Lithium metal is deemed as an ideal anode material for next-generation lithium ion batteries (LIBs) ...
Since their commercialization in 1990, the electrodes of the lithium-ion battery have remained funda...
Lithium (Li) metal is the most ideal anode material in lithium ion batteries due to its large theore...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Here, we report a new charge protocol for dendrite-free Li-metal battery based on the understanding ...
Lithium metal has the highest theoretical specific capacity and the most negative redox potential am...
Lithium (Li) metal is the most ideal anode material in lithium ion batteries due to its large theore...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
Abstract Suppressing Li dendrite growth has gained research interest due to the high theoretical cap...
Uncontrolled dendrite formation in the high energy density of lithium (Li) metal batteries (LMBs) ma...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Lithium (Li) dendrite alleviation via three-dimensional (3D) structured current collectors has been ...
Conventional graphite faces theoretical capacity limitation, and conventional cells using graphite s...
Lithium metal is deemed as an ideal anode material for next-generation lithium ion batteries (LIBs) ...
Since their commercialization in 1990, the electrodes of the lithium-ion battery have remained funda...
Lithium (Li) metal is the most ideal anode material in lithium ion batteries due to its large theore...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Here, we report a new charge protocol for dendrite-free Li-metal battery based on the understanding ...
Lithium metal has the highest theoretical specific capacity and the most negative redox potential am...
Lithium (Li) metal is the most ideal anode material in lithium ion batteries due to its large theore...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
Abstract Suppressing Li dendrite growth has gained research interest due to the high theoretical cap...