In this response to the comments on our article Li3Fe2(HPO3)3Cl: an electroactive iron phosphite as a new polyanionic cathode material for Li-ion battery regarding reproduction of the electroactive compound, Li3Fe2(HPO3)3Cl, we demonstrated that the experiments are reproducible. We have also analysed the possible reasons for the failure of the reactions in the laboratory of Yu et al. and tried to answer some of the doubts and questions raised by the concerned authors
Authors acknowledge financial support from the National Natural Science Foundation of China (5182221...
To satisfy the needs of rapidly growing applications, Li-ion batteries require further significant i...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
A novel lithium containing iron-chlorophosphite, Li3Fe2(HPO3)3Cl has been synthesized by employing l...
A new lithium containing iron(III) phosphite, LiFe(HPO<sub>3</sub>)<sub>2</sub>, has been synthesi...
We described a lithium-oxygen (Li-O2) battery comprising a graphene electrode, a dimethoxyethane-bas...
With the ever-growing public and now commercial sentiment supporting the widespread adoption of low ...
The electrochemical reaction mechanisms of FePx (x = 1, 2, 4) as electrode materials in Li batteries...
International audienceThis paper describes the preparation, characterization and electrochemical stu...
Dans cette thèse nous démontrons le travail fait sur deux matériaux de cathodes pour les piles lithi...
Lithium ion battery is the most important energy storage device. Its applications are expanding to l...
Polyanion-type materials, like lithium iron phosphate, are one of the great success in the research ...
International audienceWe demonstrate in this Comment that the theory of simple metals applied to the...
A new lithium containing iron(III) phosphite, LiFe(HPO3)2, has been synthesized via a solvent-free, ...
Air pollution is a global problem. Transportation is one of the major contributors. Using electric v...
Authors acknowledge financial support from the National Natural Science Foundation of China (5182221...
To satisfy the needs of rapidly growing applications, Li-ion batteries require further significant i...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
A novel lithium containing iron-chlorophosphite, Li3Fe2(HPO3)3Cl has been synthesized by employing l...
A new lithium containing iron(III) phosphite, LiFe(HPO<sub>3</sub>)<sub>2</sub>, has been synthesi...
We described a lithium-oxygen (Li-O2) battery comprising a graphene electrode, a dimethoxyethane-bas...
With the ever-growing public and now commercial sentiment supporting the widespread adoption of low ...
The electrochemical reaction mechanisms of FePx (x = 1, 2, 4) as electrode materials in Li batteries...
International audienceThis paper describes the preparation, characterization and electrochemical stu...
Dans cette thèse nous démontrons le travail fait sur deux matériaux de cathodes pour les piles lithi...
Lithium ion battery is the most important energy storage device. Its applications are expanding to l...
Polyanion-type materials, like lithium iron phosphate, are one of the great success in the research ...
International audienceWe demonstrate in this Comment that the theory of simple metals applied to the...
A new lithium containing iron(III) phosphite, LiFe(HPO3)2, has been synthesized via a solvent-free, ...
Air pollution is a global problem. Transportation is one of the major contributors. Using electric v...
Authors acknowledge financial support from the National Natural Science Foundation of China (5182221...
To satisfy the needs of rapidly growing applications, Li-ion batteries require further significant i...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...