Li-ion battery (LIB) electrodes contain a substantial amount of electrochemically inactive materials, including binder, conductive agent, and current collectors. These extra components significantly dilute the specific capacity of whole electrodes, and thus have led to efforts to utilize foils, e.g., Al, as the sole anode material. Interestingly, the literature has many reports of fast degradation of Al electrodes, where less than a dozen cycles can be achieved. However, in some studies, Al anodes demonstrate stable cycling life with several hundred cycles. In this work, we present a successful pathway for enabling long-term cycling of simple Al foil anodes: β-LiAl phase grown from Al foil (α-Al) exhibits a cycling life of 500 cycles with a...
To achieve good rate capability of lithium metal anodes for high-energy-density batteries, one funda...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
Toward realizing the high-energy-density rechargeable batteries, self-supporting aluminum (Al) foil ...
Lithium-ion battery electrodes contain a substantial amount of electrochemically inactive materials,...
Aluminum foils are an appealing anode for lithium-ion batteries due to their high capacity and low-c...
Aluminum foil is a promising candidate anode material for lithium-ion batteries (LIBs), due to its h...
© 2019 Elsevier Ltd While self-supporting Al foil anode has high theoretical capacity and appropriat...
Aluminum–metal batteries show great potential as next-generation energy storage due to their abundan...
The serious safety issues caused by uncontrollable lithium (Li) dendrite growth, especially at high ...
Rechargeable batteries are key to unlocking the potential held by both electric vehicles and clean e...
This thesis focuses on the development of new anodes for Li ion batteries. Aluminium has been long c...
Energy is one of the biggest challenges of the 21st century. Factors such as the decline in availabi...
Aluminum (Al) batteries, with merits of cost effectiveness, safe handle, high capacity and dendrite-...
Demands for high energy-density batteries have sharpened with the increased use of portable electron...
Lithium-ion batteries (LIBs) have become an essential commodity ever since their commercialization i...
To achieve good rate capability of lithium metal anodes for high-energy-density batteries, one funda...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
Toward realizing the high-energy-density rechargeable batteries, self-supporting aluminum (Al) foil ...
Lithium-ion battery electrodes contain a substantial amount of electrochemically inactive materials,...
Aluminum foils are an appealing anode for lithium-ion batteries due to their high capacity and low-c...
Aluminum foil is a promising candidate anode material for lithium-ion batteries (LIBs), due to its h...
© 2019 Elsevier Ltd While self-supporting Al foil anode has high theoretical capacity and appropriat...
Aluminum–metal batteries show great potential as next-generation energy storage due to their abundan...
The serious safety issues caused by uncontrollable lithium (Li) dendrite growth, especially at high ...
Rechargeable batteries are key to unlocking the potential held by both electric vehicles and clean e...
This thesis focuses on the development of new anodes for Li ion batteries. Aluminium has been long c...
Energy is one of the biggest challenges of the 21st century. Factors such as the decline in availabi...
Aluminum (Al) batteries, with merits of cost effectiveness, safe handle, high capacity and dendrite-...
Demands for high energy-density batteries have sharpened with the increased use of portable electron...
Lithium-ion batteries (LIBs) have become an essential commodity ever since their commercialization i...
To achieve good rate capability of lithium metal anodes for high-energy-density batteries, one funda...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
Toward realizing the high-energy-density rechargeable batteries, self-supporting aluminum (Al) foil ...