An electrochemical energy storage system with high energy density, stringent safety, and reliability is highly desirable for next-generation energy storage devices. Here an aqueous rechargeable alkaline Co<sub><i>x</i></sub>Ni<sub>2–<i>x</i></sub>S<sub>2</sub> // TiO<sub>2</sub> battery system is designed by integrating two reversible electrode processes associated with OH<sup>–</sup> insertion/extraction in the cathode part and Li ion insertion/extraction in the anode part, respectively. The prototype Co<sub><i>x</i></sub>Ni<sub>2–<i>x</i></sub>S<sub>2</sub> // TiO<sub>2</sub> battery is able to deliver high energy/power densities of 83.7 Wh/kg at 609 W/kg (based on the total mass of active materials) and good cycling stabilities (capacity...
A lithium−iodine (Li−I2) cell using the triiodide/iodide (I3−/I−) redox couple in an aqueous cathode...
GRIDS Project: Traditional consumer-grade disposable batteries are made of Zinc and Manganese, 2 ine...
Aqueous intercalation batteries, using Earth-abundant electrode materials such as TiO2, present the ...
The use of electricity generated from clean and renewable sources, such as water, wind, or sunlight,...
A redox flow lithium battery (RFLB) has decoupled energy storage and power generation units like a c...
The lithium-ion batteries that ushered in the wireless revolution rely on electrode strategies that ...
Rechargeable battery systems that use Na-based anodes as alternatives to Li-ion batteries are highly...
The feasibility of utilizing disordered Ni-based metal hydroxide, as both the anode and the cathode ...
International audienceTiO2 (B) has been investigated as a possible candidate to replace Li4Ti5O12 as...
A lithium–iodine (Li–I<sub>2</sub>) cell using the triiodide/iodide (I<sub>3</sub><sup>–</sup>/I<sup...
High-energy-density rechargeable batteries with performance beyond that of lithium-ion batteries are...
TiO2 (B) has been investigated as a possible candidate to replace Li4Ti5O12 as a negative electrode ...
A challenge in developing high-performance lithium batteries requires a safe technology without flam...
The evolution of human civilization is accompanied with ever increasing energy consumption. Hydro-el...
In this study, a new dual-ion battery (DIB) concept based on an aqueous/non-aqueous electrolyte is r...
A lithium−iodine (Li−I2) cell using the triiodide/iodide (I3−/I−) redox couple in an aqueous cathode...
GRIDS Project: Traditional consumer-grade disposable batteries are made of Zinc and Manganese, 2 ine...
Aqueous intercalation batteries, using Earth-abundant electrode materials such as TiO2, present the ...
The use of electricity generated from clean and renewable sources, such as water, wind, or sunlight,...
A redox flow lithium battery (RFLB) has decoupled energy storage and power generation units like a c...
The lithium-ion batteries that ushered in the wireless revolution rely on electrode strategies that ...
Rechargeable battery systems that use Na-based anodes as alternatives to Li-ion batteries are highly...
The feasibility of utilizing disordered Ni-based metal hydroxide, as both the anode and the cathode ...
International audienceTiO2 (B) has been investigated as a possible candidate to replace Li4Ti5O12 as...
A lithium–iodine (Li–I<sub>2</sub>) cell using the triiodide/iodide (I<sub>3</sub><sup>–</sup>/I<sup...
High-energy-density rechargeable batteries with performance beyond that of lithium-ion batteries are...
TiO2 (B) has been investigated as a possible candidate to replace Li4Ti5O12 as a negative electrode ...
A challenge in developing high-performance lithium batteries requires a safe technology without flam...
The evolution of human civilization is accompanied with ever increasing energy consumption. Hydro-el...
In this study, a new dual-ion battery (DIB) concept based on an aqueous/non-aqueous electrolyte is r...
A lithium−iodine (Li−I2) cell using the triiodide/iodide (I3−/I−) redox couple in an aqueous cathode...
GRIDS Project: Traditional consumer-grade disposable batteries are made of Zinc and Manganese, 2 ine...
Aqueous intercalation batteries, using Earth-abundant electrode materials such as TiO2, present the ...