Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expansion in lithium metal (Li) negative electrode leads to rapid performance degradation and serious safety problems of lithium metal batteries. Although N-containing functional groups in carbon materials are reported to be effective to homogenize the Li+ flux, the effective interaction distance between lithium ions and N-containing groups should be relatively small (down to nanometer scale) according to the Debye length law. Thus, it is necessary to carefully design the microstructure of N-containing carbon materials to make the most of their roles in regulating the Li+ flux. In this work, porous carbon nitride microspheres (PCNMs) with abundan...
Rechargeable lithium metal batteries have been regarded as one of the most attractive high-energy-de...
Lithium (Li) metal is the most ideal anode material in lithium ion batteries due to its large theore...
Abstract(#br)The implementation of the high-capacity Li metal anode in practical batteries has not b...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Abstract Suppressing Li dendrite growth has gained research interest due to the high theoretical cap...
To unlock the great potential of lithium metal anodes for high-performance batteries, a number of cr...
Because of its ultrahigh specific capacity, lithium metal holds great promise for revolutionizing cu...
Uncontrolled dendrites resulting from nonuniform lithium (Li) nucleation/growth and Li volume expans...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
Lithium metal as a battery anode is one of the most promising energy storage materials owing to its ...
Next-generation high-energy batteries will require a rechargeable lithium metal anode, but lithium d...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Lithium dendrite growth on the anode during cycling leads to poor stability and severe safety issue,...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
Rechargeable lithium metal batteries have been regarded as one of the most attractive high-energy-de...
Lithium (Li) metal is the most ideal anode material in lithium ion batteries due to its large theore...
Abstract(#br)The implementation of the high-capacity Li metal anode in practical batteries has not b...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Abstract Suppressing Li dendrite growth has gained research interest due to the high theoretical cap...
To unlock the great potential of lithium metal anodes for high-performance batteries, a number of cr...
Because of its ultrahigh specific capacity, lithium metal holds great promise for revolutionizing cu...
Uncontrolled dendrites resulting from nonuniform lithium (Li) nucleation/growth and Li volume expans...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
Lithium metal as a battery anode is one of the most promising energy storage materials owing to its ...
Next-generation high-energy batteries will require a rechargeable lithium metal anode, but lithium d...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Lithium dendrite growth on the anode during cycling leads to poor stability and severe safety issue,...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
Rechargeable lithium metal batteries have been regarded as one of the most attractive high-energy-de...
Lithium (Li) metal is the most ideal anode material in lithium ion batteries due to its large theore...
Abstract(#br)The implementation of the high-capacity Li metal anode in practical batteries has not b...