This work reports that natural graphite is capable of Na insertion and extraction with a remarkable reversibility using ether-based electrolytes. Natural graphite (the most well-known anode material for Li-ion batteries) has been barely studied as a suitable anode for Na rechargeable batteries due to the lack of Na intercalation capability. Herein, graphite is not only capable of Na intercalation but also exhibits outstanding performance as an anode for Na ion batteries. The graphite anode delivers a reversible capacity of approximate to 150 mAh g(-1) with a cycle stability for 2500 cycles, and more than 75 mAh g(-1) at 10 A g(-1) despite its micrometer-size (approximate to 100 m). An Na storage mechanism in graphite, where Na+-solvent co-i...
The limited Na-storage capacity of graphite anodes for sodium-ion batteries (∼110 mAh g−1) is signif...
Lithium-ion batteries (LIBs) have dominated the energy storage market for more than two decades; how...
Recently, graphite has been recognized as a potential negative electrode for sodium (Na)-ion batteri...
This work reports that natural graphite is capable of Na insertion and extraction with a remarkable ...
Co-intercalation reactions make graphite as promising anodes for sodium ion batteries, however, the ...
Sodium ion battery is a potential sustainable energy storage system due to its abundance and low cos...
This study is focused on graphite as anode material for sodium-ion batteries (NIBs). Graphite electr...
Graphite is the most widely used anode material for Li-ion batteries and is also considered a promis...
Graphite is the most widely used anode material for Li-ion batteries and is also considered a promis...
The insertion of guest species in graphite is the key feature utilized in applications ranging from ...
Room-temperature rechargeable sodium-ion batteries (SIBs), in view of the large availability and low...
Sodium, in contrast to other metals, cannot intercalate in graphite, hindering the use of this cheap...
Room-temperature rechargeable sodium-ion batteries (SIBs), in view of the large availability and low...
Lithium-ion batteries (LIBs) have dominated the energy storage market for more than two decades; how...
The electrochemical performance as potential anodes for sodium-ion batteries of boron-doped and non-...
The limited Na-storage capacity of graphite anodes for sodium-ion batteries (∼110 mAh g−1) is signif...
Lithium-ion batteries (LIBs) have dominated the energy storage market for more than two decades; how...
Recently, graphite has been recognized as a potential negative electrode for sodium (Na)-ion batteri...
This work reports that natural graphite is capable of Na insertion and extraction with a remarkable ...
Co-intercalation reactions make graphite as promising anodes for sodium ion batteries, however, the ...
Sodium ion battery is a potential sustainable energy storage system due to its abundance and low cos...
This study is focused on graphite as anode material for sodium-ion batteries (NIBs). Graphite electr...
Graphite is the most widely used anode material for Li-ion batteries and is also considered a promis...
Graphite is the most widely used anode material for Li-ion batteries and is also considered a promis...
The insertion of guest species in graphite is the key feature utilized in applications ranging from ...
Room-temperature rechargeable sodium-ion batteries (SIBs), in view of the large availability and low...
Sodium, in contrast to other metals, cannot intercalate in graphite, hindering the use of this cheap...
Room-temperature rechargeable sodium-ion batteries (SIBs), in view of the large availability and low...
Lithium-ion batteries (LIBs) have dominated the energy storage market for more than two decades; how...
The electrochemical performance as potential anodes for sodium-ion batteries of boron-doped and non-...
The limited Na-storage capacity of graphite anodes for sodium-ion batteries (∼110 mAh g−1) is signif...
Lithium-ion batteries (LIBs) have dominated the energy storage market for more than two decades; how...
Recently, graphite has been recognized as a potential negative electrode for sodium (Na)-ion batteri...