Phosphorus is an attractive negative electrode material for sodium ion batteries due to its high theoretical specific capacity of 2,596 mAh g-1 . However, it suffers poor conductivity (10-12 S m-1 ), slow reaction dynamics, and large volume expansion (~440 %) during the sodiation process, leading to rapid capacity decay upon cycling. Great attention has been devoted to improving the electrical conductivity via mixing phosphorus particles with conductive carbon materials, yet little emphasis has been placed on addressing the volume expansion issue, which may leads to the loss of electrical contact between the active material and the current collector, and the sequent deterioration of the overall electrochemical performance. Here, we demonstr...
High specific capacity battery electrode materials have attracted great research attention. Phosphor...
The heteroatom doping of carbon materials can significantly improve the electrochemical performance ...
Red phosphorus/graphite (P/G) and red phosphorus/carbon nanotube (P/CNT) composites were prepared by...
Phosphorus is an attractive negative electrode material for sodium ion batteries due to its high the...
Red phosphorus (RP) is a promising candidate as an anode for sodium-ion batteries because of its low...
Sodium-ion batteries will have an important role as a complement to lithium-ion in a future where li...
Sodium-ion batteries (SIBs) are promising alternative to Lithium-ion batteries for massive stationar...
Red phosphorus (RP) is a promising candidate as an anode for sodium-ion batteries because of its low...
Red phosphorus is appealing for anode use in sodium-ion batteries. However, the synthesis of electro...
Red phosphorus has been widely studied as the most promising anode material for sodium ion batteries...
Red phosphorus has been widely studied as the most promising anode material for sodium ion batteries...
<p>Black phosphorus (BP) has received increasing research attention as an anode material in sodium-i...
Black phosphorus (BP) has received increasing research attention as an anode material in sodium-ion ...
Due to the demand to upgrade from lithium-ion batteries (LIB), sodium-ion batteries (SIB) have been ...
Due to the demand to upgrade from lithium-ion batteries (LIB), sodium-ion batteries (SIB) have been ...
High specific capacity battery electrode materials have attracted great research attention. Phosphor...
The heteroatom doping of carbon materials can significantly improve the electrochemical performance ...
Red phosphorus/graphite (P/G) and red phosphorus/carbon nanotube (P/CNT) composites were prepared by...
Phosphorus is an attractive negative electrode material for sodium ion batteries due to its high the...
Red phosphorus (RP) is a promising candidate as an anode for sodium-ion batteries because of its low...
Sodium-ion batteries will have an important role as a complement to lithium-ion in a future where li...
Sodium-ion batteries (SIBs) are promising alternative to Lithium-ion batteries for massive stationar...
Red phosphorus (RP) is a promising candidate as an anode for sodium-ion batteries because of its low...
Red phosphorus is appealing for anode use in sodium-ion batteries. However, the synthesis of electro...
Red phosphorus has been widely studied as the most promising anode material for sodium ion batteries...
Red phosphorus has been widely studied as the most promising anode material for sodium ion batteries...
<p>Black phosphorus (BP) has received increasing research attention as an anode material in sodium-i...
Black phosphorus (BP) has received increasing research attention as an anode material in sodium-ion ...
Due to the demand to upgrade from lithium-ion batteries (LIB), sodium-ion batteries (SIB) have been ...
Due to the demand to upgrade from lithium-ion batteries (LIB), sodium-ion batteries (SIB) have been ...
High specific capacity battery electrode materials have attracted great research attention. Phosphor...
The heteroatom doping of carbon materials can significantly improve the electrochemical performance ...
Red phosphorus/graphite (P/G) and red phosphorus/carbon nanotube (P/CNT) composites were prepared by...