The widespread commercialization of today’s plug-in hybrid and all electric vehicles will rely on improved lithium batteries with higher energy density, greater power, and durability.To take advantage of the high density of SnO<sub>2</sub> anodes for Li ion batteries, we achieved a smart design of monodispersed SnO<sub>2</sub>/MSCS composite with very high content of SnO<sub>2</sub> by a simple infiltration procedure. The synergistic effects of the unique nanoarchitecture of MSCS and the ultrafine size of SnO<sub>2</sub> nanoparticle endowed the composite with superior electrochemical performance. Because of the high density of the composite resulting from its monodispersed submicrometer spherical morphology, an exceptionally high reversibl...
We demonstrate here that mesoporous tin dioxide (abbreviated M-SnO2) with a broad pore size distribu...
In this report, we designed a novel SWNTs@SnO<sub>2</sub>@PPy coaxial nanocable as superior anode ma...
Nanocomposite SnO2/GeO2 inverse opals (IOs) provide long cycle life with excellent capacity retentio...
In the recent years, the massive spreading of electric devices led the research to focus on high ene...
Abstract Ultrafine SnO2/Sn nanoparticles encapsulated into the adjustable mesoporous carbon matrix h...
We demonstrate here that mesoporous tin dioxide (abbreviated M-SnO2) with a broad pore size distribu...
Abstract The two major limitations in the application of SnO2 for lithium-ion battery (LIB) anodes a...
High on energy: An ordered mesoporous core/shell structured SnO 2/C nanocomposite was obtained from ...
Development of feasible electrode materials is significant to realize high energy density Li-ion bat...
International audienceAn ordered network of interconnected tin oxide (SnO2) nanoparticles with a uni...
This work describes the preparation of a novel composite material made of nanosized SnO2 supported i...
A tubular composite, including ultrafine SnO2 particles encapsulated in ordered tubular mesoporous c...
A macroporous SnO2/C composite anode material was synthesized using an organic template-assisted met...
The proliferation of portable consumer electronics has been built upon the breakthrough in electrode...
Mesoporous SnO2–SiO2 composite stable up to 600 °C with a BET surface area of 350 m2 g-1 and an aver...
We demonstrate here that mesoporous tin dioxide (abbreviated M-SnO2) with a broad pore size distribu...
In this report, we designed a novel SWNTs@SnO<sub>2</sub>@PPy coaxial nanocable as superior anode ma...
Nanocomposite SnO2/GeO2 inverse opals (IOs) provide long cycle life with excellent capacity retentio...
In the recent years, the massive spreading of electric devices led the research to focus on high ene...
Abstract Ultrafine SnO2/Sn nanoparticles encapsulated into the adjustable mesoporous carbon matrix h...
We demonstrate here that mesoporous tin dioxide (abbreviated M-SnO2) with a broad pore size distribu...
Abstract The two major limitations in the application of SnO2 for lithium-ion battery (LIB) anodes a...
High on energy: An ordered mesoporous core/shell structured SnO 2/C nanocomposite was obtained from ...
Development of feasible electrode materials is significant to realize high energy density Li-ion bat...
International audienceAn ordered network of interconnected tin oxide (SnO2) nanoparticles with a uni...
This work describes the preparation of a novel composite material made of nanosized SnO2 supported i...
A tubular composite, including ultrafine SnO2 particles encapsulated in ordered tubular mesoporous c...
A macroporous SnO2/C composite anode material was synthesized using an organic template-assisted met...
The proliferation of portable consumer electronics has been built upon the breakthrough in electrode...
Mesoporous SnO2–SiO2 composite stable up to 600 °C with a BET surface area of 350 m2 g-1 and an aver...
We demonstrate here that mesoporous tin dioxide (abbreviated M-SnO2) with a broad pore size distribu...
In this report, we designed a novel SWNTs@SnO<sub>2</sub>@PPy coaxial nanocable as superior anode ma...
Nanocomposite SnO2/GeO2 inverse opals (IOs) provide long cycle life with excellent capacity retentio...