Sodium ion batteries (SIBs) are promising candidates for the applications of large-scale energy storage due to their cost-effective and environmental-friendly characteristics. Nevertheless, it remains a practical challenge to find a cathode material of SIBs showing ideal performance (capacity, reversibility, etc.). We report here a nanocomposite material of amorphous, porous FePO<sub>4</sub> nanoparticles electrically wired by single-wall carbon nanotubes as a potential cathode material for SIBs. The hydrothermally synthesized nanocomposite shows excellent cell performance with unprecedented cycling stability and reversibility. The discharge capacity of as high as 120 mAh/g is delivered at a 0.1 C rate (10 mA/g). The capacity retentions are...
A type of porous carbon-Fe3O4 (e.g., PC-Fe3O4) composite with an industrially scalable production wa...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
In this work we investigated an energy-efficient biotemplated route to synthesize nanostructured FeP...
Two-dimensional (2D) nanomaterials have drawn enormous attention as anode materials for sodium-ion b...
Battery Science and TechnologyLithium-ion batteries are one of the great successes of modern electro...
To improve the performance of energy storage systems, the rational design of new electrode configura...
A facile strategy to construct composites of amorphous FePO4 (a-FePO4) nanoparticles and carbon addi...
In our previous work, we reported the formation and mechanism of mono/bi-layer phosphate-based mater...
Uniform amorphous FePO4 nanospheres are successfully synthesized by a simple hydrothermal process. T...
A high-voltage sodium-ion full battery has been assembled based on Na6Fe5(SO4)8 sulfate structurally...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
A type of porous carbon-Fe3O4 (e.g., PC-Fe3O4) composite with an industrially scalable production wa...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
In this work we investigated an energy-efficient biotemplated route to synthesize nanostructured FeP...
Two-dimensional (2D) nanomaterials have drawn enormous attention as anode materials for sodium-ion b...
Battery Science and TechnologyLithium-ion batteries are one of the great successes of modern electro...
To improve the performance of energy storage systems, the rational design of new electrode configura...
A facile strategy to construct composites of amorphous FePO4 (a-FePO4) nanoparticles and carbon addi...
In our previous work, we reported the formation and mechanism of mono/bi-layer phosphate-based mater...
Uniform amorphous FePO4 nanospheres are successfully synthesized by a simple hydrothermal process. T...
A high-voltage sodium-ion full battery has been assembled based on Na6Fe5(SO4)8 sulfate structurally...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
A type of porous carbon-Fe3O4 (e.g., PC-Fe3O4) composite with an industrially scalable production wa...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...