Although metallic lithium is regarded as an ideal anode material for high-energy-density batteries, the low cycling efficiency and safety issues hinder its practical application. In this study, a three-dimensional (3D) lithium composite anode was developed through infusing molten lithium inside the Cu foam anchored by ZnO nanoparticles. The introduced ZnO layer provides the driving force for infusion, leading to the spontaneous wetting of molten lithium. Benefiting from well-confined preloaded lithium in the Cu network, the anode displays ultralow internal resistance and stabilized interface. The fabricated anode for the symmetric cell shows extraordinarily low overpotential at high current densities (15, 33, and 50 mV at 3, 5, and 8 mA cm<...
Confining Li metal in a three-dimensional (3D) matrix has been proven effective in improving the Li-...
The inability to guide the nucleation locations of electrochemically deposited Li has long been cons...
Lithium (Li) is a promising battery anode because of its high theoretical capacity and low reduction...
Although metallic lithium is regarded as an ideal anode material for high-energy-density batteries, ...
Suppressing dendrite growth and accommodating volume change, among others, are the main challenges f...
In developing advanced lithium (Li) metal batteries with high-energy density, excellent cycle stabil...
Metallic lithium (Li) has been acclaimed as the most promising anode materials for lithium batteries...
In this work, metal foam current collectors (CCs, i.e. nickel [Ni] and copper [Cu]) were treated by ...
An Li metal anode has been proposed as a promising candidate for high energy density electrode mater...
Rechargeable lithium metal anodes (LMAs) with long cycling life have been regarded as the Holy Grai...
To achieve good rate capability of lithium metal anodes for high-energy-density batteries, one funda...
Practical application of metallic Li anode in Li-ion batteries has been restricted because of dendri...
Three-dimensional (3D) porous hosts with abundant space inside can accommodate volume variation duri...
Practical application of metallic Li anode in Li-ion batteries has been restricted because of dendri...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Confining Li metal in a three-dimensional (3D) matrix has been proven effective in improving the Li-...
The inability to guide the nucleation locations of electrochemically deposited Li has long been cons...
Lithium (Li) is a promising battery anode because of its high theoretical capacity and low reduction...
Although metallic lithium is regarded as an ideal anode material for high-energy-density batteries, ...
Suppressing dendrite growth and accommodating volume change, among others, are the main challenges f...
In developing advanced lithium (Li) metal batteries with high-energy density, excellent cycle stabil...
Metallic lithium (Li) has been acclaimed as the most promising anode materials for lithium batteries...
In this work, metal foam current collectors (CCs, i.e. nickel [Ni] and copper [Cu]) were treated by ...
An Li metal anode has been proposed as a promising candidate for high energy density electrode mater...
Rechargeable lithium metal anodes (LMAs) with long cycling life have been regarded as the Holy Grai...
To achieve good rate capability of lithium metal anodes for high-energy-density batteries, one funda...
Practical application of metallic Li anode in Li-ion batteries has been restricted because of dendri...
Three-dimensional (3D) porous hosts with abundant space inside can accommodate volume variation duri...
Practical application of metallic Li anode in Li-ion batteries has been restricted because of dendri...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Confining Li metal in a three-dimensional (3D) matrix has been proven effective in improving the Li-...
The inability to guide the nucleation locations of electrochemically deposited Li has long been cons...
Lithium (Li) is a promising battery anode because of its high theoretical capacity and low reduction...