none3noLi/O2 batteries are a breakthrough in battery technology for powering long-range electric vehicles. The viability of high efficiency, rechargeable Li/O2 battery is demonstrated by the use of catalyst-free mesomacroporous carbon cathode and N-butyl-N-methyl pyrrolidinium bis(trifluoromethanesulfonyl)imide ionic liquid-based electrolyte. The carbon electrode, obtained by a simple, low-cost template method, features a high specific capacity of 2500 mAh/g at 2.6 V vs. Liþ/Li and, more importantly, a recharge potential lower than 3.8 V vs Li+/Li that prevents secondary reactions in the ionic liquid detrimental for battery rechargeability and makes it possible to reach a recharge efficiency of 90%.mixedF. Soavi; S. Monaco; M. Mastragostino...
The synthesis of a new ionic liquid (IL), consisting of the symmetric tetra-butyl-phosphonium (P4444...
A novel lithium-oxygen battery exploiting PYR14TFSI-LiTFSI as ionic liquid-based electrolyte medium ...
The challenges for further development of Li rechargeable batteries for electric vehicles are review...
none3noThe use of ionic liquid (IL)-based electrolytes and porous carbonaceous cathodes is today one...
Despite the considerable initial optimism behind its development and prospective commercialization, ...
The replacement of the combustion-engine by sustainable electric or hybrid vehicles, may effectively...
Cathode configurations reported herein are alternative to the most diffused ones for application in ...
Despite the considerable initial optimism behind its development and prospective commercialization, ...
The specific energy of lithium-ion batteries (LIBs) is today 200 Wh/kg, a value not sufficient to po...
Much of materials electrochemistry represents a fusion of solid-state chemistry and electrochemistry...
In the present work, two porous carbon materials were synthetized by two novel methods using IL.\n\n...
The lithium-oxygen battery has the potential to deliver extremely high energy densities; however, th...
In this paper, we report an advanced long-life lithium ion battery, employing a Pyr14TFSI-LiTFSI non...
Highly crystalline α-MnO2 is synthesized by facile reduction of KMnO4 in acidic solution. The obtain...
The energy density of current rechargeable lithium batteries is limited by the capacity of the LiCoO...
The synthesis of a new ionic liquid (IL), consisting of the symmetric tetra-butyl-phosphonium (P4444...
A novel lithium-oxygen battery exploiting PYR14TFSI-LiTFSI as ionic liquid-based electrolyte medium ...
The challenges for further development of Li rechargeable batteries for electric vehicles are review...
none3noThe use of ionic liquid (IL)-based electrolytes and porous carbonaceous cathodes is today one...
Despite the considerable initial optimism behind its development and prospective commercialization, ...
The replacement of the combustion-engine by sustainable electric or hybrid vehicles, may effectively...
Cathode configurations reported herein are alternative to the most diffused ones for application in ...
Despite the considerable initial optimism behind its development and prospective commercialization, ...
The specific energy of lithium-ion batteries (LIBs) is today 200 Wh/kg, a value not sufficient to po...
Much of materials electrochemistry represents a fusion of solid-state chemistry and electrochemistry...
In the present work, two porous carbon materials were synthetized by two novel methods using IL.\n\n...
The lithium-oxygen battery has the potential to deliver extremely high energy densities; however, th...
In this paper, we report an advanced long-life lithium ion battery, employing a Pyr14TFSI-LiTFSI non...
Highly crystalline α-MnO2 is synthesized by facile reduction of KMnO4 in acidic solution. The obtain...
The energy density of current rechargeable lithium batteries is limited by the capacity of the LiCoO...
The synthesis of a new ionic liquid (IL), consisting of the symmetric tetra-butyl-phosphonium (P4444...
A novel lithium-oxygen battery exploiting PYR14TFSI-LiTFSI as ionic liquid-based electrolyte medium ...
The challenges for further development of Li rechargeable batteries for electric vehicles are review...