Sodium ion batteries (SIBs) using hard carbon as negative electrode hold the promise of being low cost alternative to lithium ion batteries (LiBs). However, the Na+ storage mechanism in hard carbons is not fully understood yet and the attribution of Na storage in the sloping and plateau regions of the sodiation/desodiation curves remains still controversial. The current work employs N-2, Kr and CO2 gases to correctly assess the changes in hard carbon porosity induced by different pyrolysis temperature of cellulose. The sloping capacity was found to decrease with the decrease of the specific area of ultramicropores measurable only by CO2 adsorption, while the plateau capacity demonstrated an opposite behavior. The high temperature derived ca...
Sodium-ion batteries are one of the ideal devices for large-scale energy storage systems, and hard c...
International audienceCellulose, the most abundant organic polymer on Earth, is a sustainable source...
In situ operando electrochemical dilatometry ECD provides information on the expansion shrinkage...
Nongraphitizable carbon, also known as hard carbon, is considered one of the most promising anodes f...
International audienceThe relationship between the properties of hard carbon (HC) and its performanc...
Graphite is the commercial anode for lithium-ion batteries; however, it fails to extend its success ...
Na-ion batteries (NIBs) have recently attracted extensive attention from the scientific community, a...
International audienceHard carbons are considered among the most promising anode materials for Na-io...
Sodium-ion batteries (SIBs) are one of the most promising candidates to replace lithium-ion batterie...
International audienceThe volumetric capacity and the initial Coulombic efficiency are features of m...
In recent years, sodium-ion batteries (NIBs) have been greatly explored as an alternative technology...
Hard carbon is a promising anode candidate for lithium/sodium ion batteries due to the key features ...
The sodium ion battery is a promising successor for the lithium ion battery. Its energy density is l...
Sodium-ion batteries are one of the ideal devices for large-scale energy storage systems, and hard c...
International audienceCellulose, the most abundant organic polymer on Earth, is a sustainable source...
In situ operando electrochemical dilatometry ECD provides information on the expansion shrinkage...
Nongraphitizable carbon, also known as hard carbon, is considered one of the most promising anodes f...
International audienceThe relationship between the properties of hard carbon (HC) and its performanc...
Graphite is the commercial anode for lithium-ion batteries; however, it fails to extend its success ...
Na-ion batteries (NIBs) have recently attracted extensive attention from the scientific community, a...
International audienceHard carbons are considered among the most promising anode materials for Na-io...
Sodium-ion batteries (SIBs) are one of the most promising candidates to replace lithium-ion batterie...
International audienceThe volumetric capacity and the initial Coulombic efficiency are features of m...
In recent years, sodium-ion batteries (NIBs) have been greatly explored as an alternative technology...
Hard carbon is a promising anode candidate for lithium/sodium ion batteries due to the key features ...
The sodium ion battery is a promising successor for the lithium ion battery. Its energy density is l...
Sodium-ion batteries are one of the ideal devices for large-scale energy storage systems, and hard c...
International audienceCellulose, the most abundant organic polymer on Earth, is a sustainable source...
In situ operando electrochemical dilatometry ECD provides information on the expansion shrinkage...