Li-metal is one of the most promising anode materials for electrochemical energy storage. However, the growth of Li dendrites during electrochemical deposition leads to low Coulombic efficiency and safety concerns and has long hindered the application of rechargeable Li-metal batteries. In this study, we designed a Cu dendritic superstructure with macropores as an anode-free three-dimensional current collector, which can significantly improve the electrochemical plating/stripping behavior of Li. The Li-metal anodes are accommodated by a Cu dendritic superstructure with no uncontrollable Li dendrites. This anode can operate for more than 600 h without a short-circuit and exhibits a low level of voltage hysteresis (~20 mV). The anode-free den...
Li metal batteries have been widely regarded as the next stage of energy storage technology, which i...
As the public demand for electric vehicles and consumer electronics grows at an exponential rate, tr...
International audienceLithium metal has been an attractive candidate as a next-generation anode mate...
Lithium metal is one of the most attractive anode materials for electrochemical energy storage. Howe...
Li metal has been recognized as the most promising anode materials for next-generation high-energy-d...
© 2017 Lithium (Li) metal possesses very high specific capacity and low electrochemical potential, w...
Suppressing dendrite growth and accommodating volume change, among others, are the main challenges f...
Hindered by dendrite growth, unceasing volume change and repeated regeneration of solid-state electr...
Although Li-ion battery is one of the most widely used energy storage devices, there have been exten...
Lithium (Li) metal, with ultra-high theoretical capacity and low electrochemical potential, is the u...
A three-dimensional (3D) printing method has been developed for preparing a lithium anode base on 3D...
Metallic Lithium have gained great attention for its high theoretical specific capacity. But continu...
A three-dimensional (3D) printing method has been developed for preparing a lithium anode base on 3D...
Lithium metal is recognized as the anticipated anode for rechargeable batteries because of its inher...
Lithium metal is recognized as the anticipated anode for rechargeable batteries because of its inher...
Li metal batteries have been widely regarded as the next stage of energy storage technology, which i...
As the public demand for electric vehicles and consumer electronics grows at an exponential rate, tr...
International audienceLithium metal has been an attractive candidate as a next-generation anode mate...
Lithium metal is one of the most attractive anode materials for electrochemical energy storage. Howe...
Li metal has been recognized as the most promising anode materials for next-generation high-energy-d...
© 2017 Lithium (Li) metal possesses very high specific capacity and low electrochemical potential, w...
Suppressing dendrite growth and accommodating volume change, among others, are the main challenges f...
Hindered by dendrite growth, unceasing volume change and repeated regeneration of solid-state electr...
Although Li-ion battery is one of the most widely used energy storage devices, there have been exten...
Lithium (Li) metal, with ultra-high theoretical capacity and low electrochemical potential, is the u...
A three-dimensional (3D) printing method has been developed for preparing a lithium anode base on 3D...
Metallic Lithium have gained great attention for its high theoretical specific capacity. But continu...
A three-dimensional (3D) printing method has been developed for preparing a lithium anode base on 3D...
Lithium metal is recognized as the anticipated anode for rechargeable batteries because of its inher...
Lithium metal is recognized as the anticipated anode for rechargeable batteries because of its inher...
Li metal batteries have been widely regarded as the next stage of energy storage technology, which i...
As the public demand for electric vehicles and consumer electronics grows at an exponential rate, tr...
International audienceLithium metal has been an attractive candidate as a next-generation anode mate...