The reversibility of lithium plating/stripping should be guaranteed in lithium metal batteries. Seriously polarized lithium growth during plating leads to the dendritic evolution of lithium metal due to the uneven current distribution on the electrically conductive surface. Artificial protective layers covering electrodes (e.g., polymer film on copper foil) have been used to narrow the gap of the current density between positions on the conductive surface. Herein, we incorporated an active ingredient to attract lithium ions into the dendrite-suppressing layer. Pyridinic nitrogen of graphitic carbon nitride (g-C3N4) served as the lithium ion affinity center. Conformation of the nitrogen was changed from pyridinic to graphitic in the presence...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
Selective deposition of lithium into a carbonaceous host is considered an effective strategy to prev...
Enabling metallic-Li negative electrodes is motivated by a significant increase of energy density, b...
The reversibility of lithium plating/stripping should be guaranteed in lithium metal batteries. Seri...
The reversibility of Li plating/stripping should be guaranteed in Li metal batteries. Seriously pola...
Reversible lithium metal plating and stripping are required for the durable operation of lithium met...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
Uncontrolled dendrites resulting from nonuniform lithium (Li) nucleation/growth and Li volume expans...
Li metal anode is deemed the most promising candidate anode for high-energy battery systems such as ...
Li3N is an excellent protective coating material for lithium electrodes with very high lithium-ion c...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
Li-ion battery safety is often threatened by undesirable lithium metal electrodeposition or dendrite...
The conductive framework is generating considerable interest for lithium metal anodes to accommodate...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
Metallic lithium reacts with organic solvents, resulting in their decomposition. The prevention of t...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
Selective deposition of lithium into a carbonaceous host is considered an effective strategy to prev...
Enabling metallic-Li negative electrodes is motivated by a significant increase of energy density, b...
The reversibility of lithium plating/stripping should be guaranteed in lithium metal batteries. Seri...
The reversibility of Li plating/stripping should be guaranteed in Li metal batteries. Seriously pola...
Reversible lithium metal plating and stripping are required for the durable operation of lithium met...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
Uncontrolled dendrites resulting from nonuniform lithium (Li) nucleation/growth and Li volume expans...
Li metal anode is deemed the most promising candidate anode for high-energy battery systems such as ...
Li3N is an excellent protective coating material for lithium electrodes with very high lithium-ion c...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
Li-ion battery safety is often threatened by undesirable lithium metal electrodeposition or dendrite...
The conductive framework is generating considerable interest for lithium metal anodes to accommodate...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
Metallic lithium reacts with organic solvents, resulting in their decomposition. The prevention of t...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
Selective deposition of lithium into a carbonaceous host is considered an effective strategy to prev...
Enabling metallic-Li negative electrodes is motivated by a significant increase of energy density, b...