The galvanostatic lithiation/sodiation voltage profiles of hard carbon anodes are simple, with a sloping drop followed by a plateau. However, a precise understanding of the corresponding redox sites and storage mechanisms is still elusive, which hinders further development in commercial applications. Here, a comprehensive comparison of the lithium- and sodium-ion storage behaviors of hard carbon is conducted, yielding the following key findings: 1) the sloping voltage section is presented by the lithium-ion intercalation in the graphitic lattices of hard carbons, whereas it mainly arises from the chemisorption of sodium ions on their inner surfaces constituting closed pores, even if the graphitic lattices are unoccupied; 2) the redox sites ...
This paper utilizes density functional theory calculations to explore amorphous carbon materials, an...
In situ (operando) electrochemical dilatometry (ECD) provides information on the expansion/shrinkage...
To render the sodium ion battery (SIB) competitive among other technologies, the processes behind so...
The galvanostatic lithiation/sodiation voltage profiles of hard carbon anodes are simple, with a slo...
Hard carbon is the most promising anode material for sodium-ion batteries and potassium-ion batterie...
We present here a comprehensive description and discussion of the possible use of hard carbons as an...
In recent years, sodium-ion batteries (NIBs) have been greatly explored as an alternative technology...
Graphite is the commercial anode for lithium-ion batteries; however, it fails to extend its success ...
Carbon-based anodes are technologically highly relevant for Li and post-Li ion batteries. While the ...
A hindrance to the practical use of sodium-ion batteries is the lack of adequate anode materials. By...
There are several questions and controversies regarding the Na storage mechanism in hard carbon. Thi...
In situ operando electrochemical dilatometry ECD provides information on the expansion shrinkage...
Hard carbon (HC) is the negative electrode (anode) material of choice for sodium‐ion batteries (SIBs...
Hard carbon (HC) is the negative electrode (anode) material of choice for sodium-ion batteries (SIBs...
There are several questions and controversies regarding the Na storage mechanism in hard carbon. Thi...
This paper utilizes density functional theory calculations to explore amorphous carbon materials, an...
In situ (operando) electrochemical dilatometry (ECD) provides information on the expansion/shrinkage...
To render the sodium ion battery (SIB) competitive among other technologies, the processes behind so...
The galvanostatic lithiation/sodiation voltage profiles of hard carbon anodes are simple, with a slo...
Hard carbon is the most promising anode material for sodium-ion batteries and potassium-ion batterie...
We present here a comprehensive description and discussion of the possible use of hard carbons as an...
In recent years, sodium-ion batteries (NIBs) have been greatly explored as an alternative technology...
Graphite is the commercial anode for lithium-ion batteries; however, it fails to extend its success ...
Carbon-based anodes are technologically highly relevant for Li and post-Li ion batteries. While the ...
A hindrance to the practical use of sodium-ion batteries is the lack of adequate anode materials. By...
There are several questions and controversies regarding the Na storage mechanism in hard carbon. Thi...
In situ operando electrochemical dilatometry ECD provides information on the expansion shrinkage...
Hard carbon (HC) is the negative electrode (anode) material of choice for sodium‐ion batteries (SIBs...
Hard carbon (HC) is the negative electrode (anode) material of choice for sodium-ion batteries (SIBs...
There are several questions and controversies regarding the Na storage mechanism in hard carbon. Thi...
This paper utilizes density functional theory calculations to explore amorphous carbon materials, an...
In situ (operando) electrochemical dilatometry (ECD) provides information on the expansion/shrinkage...
To render the sodium ion battery (SIB) competitive among other technologies, the processes behind so...