We report a facile "one-pot" method for the synthesis of Sn-embedded carbon-silica (CS) mesostructured (nanostructured) composites through the selective interaction of resol (carbon precursor), tetraethylorthosilicate (TEOS), and tributylphenyltin (Sn precursor) with an amphiphilic diblock copolymer, poly(ethylene oxide-b-styrene), PEO-b-PS. A unique morphology transition from Sn nanowires to spherical Sn nanoparticles embedded in CS framework has been obtained. Metallic Sn species are homogeneously embedded in a rigid CS framework and are effectively confined within the nanostructures. The resulting composites are used as anode materials for lithium-ion batteries and exhibit high specific capacities (600 mA h g⁻¹ at a current density of 45...
A dew mesoporous carbon-tin(MC-Sn) nanocomposite has been successfully prepared via a two-step metho...
Silicon oxycarbide/tin nanocomposites (SiOC/Sn) are prepared by chemical modification of polysilsesq...
Robust and fast lithium energy storage with a high energy density is highly desired to accelerate th...
We report a facile "one-pot" method for the synthesis of Sn-embedded carbon-silica (CS) mesostructur...
It is a formidable challenge to arrange tin nanoparticles in a porous matrix for the achievement of ...
Tin‐based materials are an emerging class of Li‐ion anodes with considerable potential for use in hi...
It is a formidable challenge to arrange tin nanoparticles in a porous matrix for the achievement of ...
Low-cost and simple methods are constantly chased in order to produce less expensive lithium-ion bat...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
Novel nanocomposites consisting of silicon/tin nanoparticles (n-Si/n-Sn) embedded in silicon carboni...
In this work we disclose an electrode based on a formulation which differs from all those previously...
Tin-based nanocomposite materials embedded in carbon frameworks can be used as effective negative el...
Nano-SnO2/carbon composite materials were synthesized in situ using the polyol method by oxidizing S...
C/Sn nanocomposites were prepared in simultaneous pyrolysis and carboreduction process (700 and 800°...
Although possessing a high specific capacity, the practical implementation of SnO2 nanoparticles as ...
A dew mesoporous carbon-tin(MC-Sn) nanocomposite has been successfully prepared via a two-step metho...
Silicon oxycarbide/tin nanocomposites (SiOC/Sn) are prepared by chemical modification of polysilsesq...
Robust and fast lithium energy storage with a high energy density is highly desired to accelerate th...
We report a facile "one-pot" method for the synthesis of Sn-embedded carbon-silica (CS) mesostructur...
It is a formidable challenge to arrange tin nanoparticles in a porous matrix for the achievement of ...
Tin‐based materials are an emerging class of Li‐ion anodes with considerable potential for use in hi...
It is a formidable challenge to arrange tin nanoparticles in a porous matrix for the achievement of ...
Low-cost and simple methods are constantly chased in order to produce less expensive lithium-ion bat...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
Novel nanocomposites consisting of silicon/tin nanoparticles (n-Si/n-Sn) embedded in silicon carboni...
In this work we disclose an electrode based on a formulation which differs from all those previously...
Tin-based nanocomposite materials embedded in carbon frameworks can be used as effective negative el...
Nano-SnO2/carbon composite materials were synthesized in situ using the polyol method by oxidizing S...
C/Sn nanocomposites were prepared in simultaneous pyrolysis and carboreduction process (700 and 800°...
Although possessing a high specific capacity, the practical implementation of SnO2 nanoparticles as ...
A dew mesoporous carbon-tin(MC-Sn) nanocomposite has been successfully prepared via a two-step metho...
Silicon oxycarbide/tin nanocomposites (SiOC/Sn) are prepared by chemical modification of polysilsesq...
Robust and fast lithium energy storage with a high energy density is highly desired to accelerate th...