ABSTRACT: Tin sulfide−reduced graphene oxide (SnS2-rGO) composite material is investigated as an advanced anode material for Na-ion batteries. It can deliver a reversible capacity of 630 mAh g−1 with negligible capacity loss and exhibits superb rate performance. Here, the energy storage mechanism of this SnS2-rGO anode and the critical mechanistic role of rGO will be revealed in detail. A synergistic mechanism involving conversion and alloying reactions is proposed based on our synchrotron X-ray diffraction (SXRD) and in situ X-ray absorption spectroscopy (XAS) results. Contrary to what has been proposed in the literature, we determined that Na2S2 forms instead of Na2S at the fully discharge state. The as-formed Na2S2 works as a matrix to r...
SnS2 nanosheets/reduced graphene oxide (rGO) composite was prepared by reflux condensation and hydro...
The functionalized graphene, with prominent capability over expansion of interlayer spacing and enha...
To date, the fabrication of advanced anode materials that can accommodate both Na+ and K+ storage is...
Tin sulfide–reduced graphene oxide (SnS<sub>2</sub>-rGO) composite material is investigated as an ad...
A layered SnS2-reduced graphene oxide (SnS2-RGO) composite is prepared by a facile hydrothermal rout...
A layered SnS2-reduced graphene oxide (SnS2-RGO) composite is prepared by a facile hydrothermal rout...
Structural phase transitions can be used to alter the properties of a material without adding any ad...
Rechargeable sodium-ion batteries have lately received considerable attention as an alternative to l...
Ultrathin SnS2 layers with high theoretical specific capacity displays promising advantages as an an...
Ultrathin SnS2 layers with high theoretical specific capacity displays promising advantages as an an...
Abstract A promising anode material composed of SnS2@CoS2 flower-like spheres assembled from SnS2 na...
Structural phase transitions can be used to alter the properties of a material without adding any ad...
Reduced graphene oxides loaded with tin–antimony alloy (RGO-SnSb) nanocomposites were synthesized th...
A layered SnS2-reduced graphene oxide (SnS2-RGO) composite is prepared by a facile hydrothermal rout...
Ultrathin SnS2 layers with high theoretical specific capacity displays promising advantages as an an...
SnS2 nanosheets/reduced graphene oxide (rGO) composite was prepared by reflux condensation and hydro...
The functionalized graphene, with prominent capability over expansion of interlayer spacing and enha...
To date, the fabrication of advanced anode materials that can accommodate both Na+ and K+ storage is...
Tin sulfide–reduced graphene oxide (SnS<sub>2</sub>-rGO) composite material is investigated as an ad...
A layered SnS2-reduced graphene oxide (SnS2-RGO) composite is prepared by a facile hydrothermal rout...
A layered SnS2-reduced graphene oxide (SnS2-RGO) composite is prepared by a facile hydrothermal rout...
Structural phase transitions can be used to alter the properties of a material without adding any ad...
Rechargeable sodium-ion batteries have lately received considerable attention as an alternative to l...
Ultrathin SnS2 layers with high theoretical specific capacity displays promising advantages as an an...
Ultrathin SnS2 layers with high theoretical specific capacity displays promising advantages as an an...
Abstract A promising anode material composed of SnS2@CoS2 flower-like spheres assembled from SnS2 na...
Structural phase transitions can be used to alter the properties of a material without adding any ad...
Reduced graphene oxides loaded with tin–antimony alloy (RGO-SnSb) nanocomposites were synthesized th...
A layered SnS2-reduced graphene oxide (SnS2-RGO) composite is prepared by a facile hydrothermal rout...
Ultrathin SnS2 layers with high theoretical specific capacity displays promising advantages as an an...
SnS2 nanosheets/reduced graphene oxide (rGO) composite was prepared by reflux condensation and hydro...
The functionalized graphene, with prominent capability over expansion of interlayer spacing and enha...
To date, the fabrication of advanced anode materials that can accommodate both Na+ and K+ storage is...