A novel nanostructured SneFe2O3eC anode material, prepared by high-energy ball milling, is here originally presented. The anode benefits from a unique morphology consisting in Fe2O3 and Sn active nanoparticles embedded in a conductive buffer carbon matrix of micrometric size. Furthermore, the Sn metal particles, revealed as amorphous according to X-ray diffraction measurement, show a size lower than 10 nm by transmission electron microscopy. The optimal combination of nano-scale active materials and micrometric electrode configuration of the SneFe2O3eC anode reflects into remarkable electrochemical performances in lithium cell, with specific capacity content higher than 900 mAh g-1 at 1C rate (810 mA g -1) and coulombic efficiency approachi...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
The preparation of Sn2Co3 nanowire arrays (NWs) electrogrown inside the channels of polycarbonate m...
A novel nanostructured SneFe2O3eC anode material, prepared by high-energy ball milling, is here orig...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
Sn-based alloy materials are strong candidates to replace graphitic carbon as the anode for the next...
In this work we disclose an electrode based on a formulation which differs from all those previously...
AbstractHerein, Fe-doped tin oxide is presented for the first time as new high-capacity lithium-ion ...
Carbon-based anodes are the key limiting factor in increasing the volumetric capacity of lithium-ion...
Nanostructured Sn@C anode is synthesized by carbon coating of nanosized tin for Li-ion battery. The ...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
Tin (Sn) anode suffers from considerable volume deformation, generating vast dilatation-induced stre...
Rechargeable lithium-ion batteries (LIBs), which are the most important electrochemical energy stora...
textLithium-alloying anode materials have attracted much attention as an alternative to carbon due t...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
The preparation of Sn2Co3 nanowire arrays (NWs) electrogrown inside the channels of polycarbonate m...
A novel nanostructured SneFe2O3eC anode material, prepared by high-energy ball milling, is here orig...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
Sn-based alloy materials are strong candidates to replace graphitic carbon as the anode for the next...
In this work we disclose an electrode based on a formulation which differs from all those previously...
AbstractHerein, Fe-doped tin oxide is presented for the first time as new high-capacity lithium-ion ...
Carbon-based anodes are the key limiting factor in increasing the volumetric capacity of lithium-ion...
Nanostructured Sn@C anode is synthesized by carbon coating of nanosized tin for Li-ion battery. The ...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
Tin (Sn) anode suffers from considerable volume deformation, generating vast dilatation-induced stre...
Rechargeable lithium-ion batteries (LIBs), which are the most important electrochemical energy stora...
textLithium-alloying anode materials have attracted much attention as an alternative to carbon due t...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
The preparation of Sn2Co3 nanowire arrays (NWs) electrogrown inside the channels of polycarbonate m...