The use of composites instead of pure metals as negative electrodes is an alternative strategy for making all-solid-state lithium-ion batteries (Li-SSBs) more viable. This study reports on the properties of a composite electrode (Sn/Graphite) consisting of nanosized Sn (17 wt %) and graphite (83 wt %). The theoretical capacity of this material is 478 mAh g(Sn/Graphite)–1. When mixed with Li3PS4 (LPS) as a solid electrolyte (SE), an areal capacity of 1.75 mAh cm–2 (active mass loading of 3.8 mg cm–2) is obtained, which can be increased up to 3.0 mAh cm–2 for 7.6 mg cm–2. At 0.02 mA cm–2, the Sn/Graphite electrode delivers a gravimetric capacity of 470 mAh g(Sn/Graphite)–1, i.e., close to its theoretical value. At 0.1 mA cm–2, the capacity is...
The limited Na-storage capacity of graphite anodes for sodium-ion batteries (∼110 mAh g−1) is signif...
The tin/graphite/silver (Sn/G/Ag) composite was prepared by high-energy mechanical milling (HEMM) fo...
Carbon-based anodes are the key limiting factor in increasing the volumetric capacity of lithium-ion...
The use of composites instead of pure metals as negative electrodes is an alternative strategy for m...
The use of composites instead of pure metals as negative electrodes is an alternative strategy for m...
The use of composites instead of pure metals as negative electrodes is an alternative strategy for m...
Microencapsulating nanosized Sn particles in graphite developed a series of new anode composite mate...
[[abstract]]Tin-based compounds/carbonaceous materials composite anodes for Li-ion rechargeable batt...
Tin-graphite composites have been developed as an alternate anode material for Li-ion batteries usin...
Tin-graphite composites have been developed as an alternate anode material for Li-ion batteries usin...
Tin-graphite composites have been developed as an alternate anode material for Li-ion batteries usin...
International audienceComplex materials composed of two and three elements with high Li-ion storage ...
International audienceComplex materials composed of two and three elements with high Li-ion storage ...
As a potential anode material for lithium-ion batteries (LIBs), metal tin shows a high specific capa...
[[abstract]]A modified electroless plating technique was adopted to prepare the Sn compounds/mesopha...
The limited Na-storage capacity of graphite anodes for sodium-ion batteries (∼110 mAh g−1) is signif...
The tin/graphite/silver (Sn/G/Ag) composite was prepared by high-energy mechanical milling (HEMM) fo...
Carbon-based anodes are the key limiting factor in increasing the volumetric capacity of lithium-ion...
The use of composites instead of pure metals as negative electrodes is an alternative strategy for m...
The use of composites instead of pure metals as negative electrodes is an alternative strategy for m...
The use of composites instead of pure metals as negative electrodes is an alternative strategy for m...
Microencapsulating nanosized Sn particles in graphite developed a series of new anode composite mate...
[[abstract]]Tin-based compounds/carbonaceous materials composite anodes for Li-ion rechargeable batt...
Tin-graphite composites have been developed as an alternate anode material for Li-ion batteries usin...
Tin-graphite composites have been developed as an alternate anode material for Li-ion batteries usin...
Tin-graphite composites have been developed as an alternate anode material for Li-ion batteries usin...
International audienceComplex materials composed of two and three elements with high Li-ion storage ...
International audienceComplex materials composed of two and three elements with high Li-ion storage ...
As a potential anode material for lithium-ion batteries (LIBs), metal tin shows a high specific capa...
[[abstract]]A modified electroless plating technique was adopted to prepare the Sn compounds/mesopha...
The limited Na-storage capacity of graphite anodes for sodium-ion batteries (∼110 mAh g−1) is signif...
The tin/graphite/silver (Sn/G/Ag) composite was prepared by high-energy mechanical milling (HEMM) fo...
Carbon-based anodes are the key limiting factor in increasing the volumetric capacity of lithium-ion...