Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of Li metal anodes. Traditional Celgard membranes which are currently used in Li metal batteries fall short in achieving uniform Li flux at the electrode/electrolyte interface due to their inherent irregular pore sizes. Here, the use of an ultrathin (≈1.2 nm) carbon nanomembrane (CNM) which contains sub-nanometer sized pores as an interlayer to regulate the mass transport of Li-ions is demonstrated. Symmetrical cell analysis reveals that the cell with CNM interlayer cycles over 2x longer than the control experiment without the formation of Li dendrites. Further investigation on the Li plating morphology on Cu foil reveals highly dense deposits o...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
The lithium metal anode (LMA) is considered as a promising star for next-generation high-energy dens...
Abstract Suppressing Li dendrite growth has gained research interest due to the high theoretical cap...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
Because of its ultrahigh specific capacity, lithium metal holds great promise for revolutionizing cu...
To unlock the great potential of lithium metal anodes for high-performance batteries, a number of cr...
Next-generation high-energy batteries will require a rechargeable lithium metal anode, but lithium d...
The application of lithium (Li) metal anodes in rechargeable batteries is primarily restricted by Li...
Rechargeable lithium (Li) metal batteries are considered the most promising of Li-based energy stora...
Rechargeable lithium metal batteries have been regarded as one of the most attractive high-energy-de...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Uncontrolled dendrite formation in the high energy density of lithium (Li) metal batteries (LMBs) ma...
Lithium metal as a battery anode is one of the most promising energy storage materials owing to its ...
Lithium (Li) metal, with ultra-high theoretical capacity and low electrochemical potential, is the u...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
The lithium metal anode (LMA) is considered as a promising star for next-generation high-energy dens...
Abstract Suppressing Li dendrite growth has gained research interest due to the high theoretical cap...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
Because of its ultrahigh specific capacity, lithium metal holds great promise for revolutionizing cu...
To unlock the great potential of lithium metal anodes for high-performance batteries, a number of cr...
Next-generation high-energy batteries will require a rechargeable lithium metal anode, but lithium d...
The application of lithium (Li) metal anodes in rechargeable batteries is primarily restricted by Li...
Rechargeable lithium (Li) metal batteries are considered the most promising of Li-based energy stora...
Rechargeable lithium metal batteries have been regarded as one of the most attractive high-energy-de...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Uncontrolled dendrite formation in the high energy density of lithium (Li) metal batteries (LMBs) ma...
Lithium metal as a battery anode is one of the most promising energy storage materials owing to its ...
Lithium (Li) metal, with ultra-high theoretical capacity and low electrochemical potential, is the u...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
The lithium metal anode (LMA) is considered as a promising star for next-generation high-energy dens...