The fabrication of battery anodes simultaneously exhibiting large capacity, fast charging capability, and high cyclic stability is challenging because these properties are mutually contrasting in nature. Here, we report a rational strategy to design anodes outperforming the current anodes by simultaneous provision of the above characteristics without utilizing nanomaterials and surface modifications. This is achieved by promoting spontaneous structural evolution of coarse Sn particles to 3D-networked nanostructures during battery cycling in an appropriate electrolyte. The anode steadily exhibits large capacity (similar to 480 mAhg(-1)) and energy retention capability (99.9%) during >1500 cycles even at an ultrafast charging rate of 12 690 m...
Since the turn of the new century, the increasing demand for high-performance energy storage systems...
To facilitate the commercialization of sodium-ion batteries (SIBs), advanced electrode materials wit...
Sodium-ion batteries are a potentially low-cost and safe alternative to the prevailing lithium-ion b...
Designed as a high-capacity alloy host for Na-ion chemistry, a forest of Sn nanorods with a unique c...
It is challenging to develop alloying anodes with ultrafast charging and large energy storage using ...
Nanostructured tin-based anodes are promising for both lithium and sodium ion batteries (LIBs and SI...
Rechargeable sodium (Na) metal batteries (SMBs) provide an alternative energy-dense, low-cost energy...
Room-temperature Na-ion batteries have attracted great interest as a low cost and environmentally be...
© 2016 Sodium-ion batteries (SIBs) are recognized as an alternative to lithium ion batteries due to ...
Two-dimensional SnS2 are known as potential anodes for Na-ion batteries owing to high energy density...
© 2018 American Chemical Society. Tin (Sn)-based materials are one of most promising candidates for ...
Sodium ion batteries attract increasing attention for large-scale energy storage as a promising alte...
Sodium-ion batteries have been considered as one of the most promising types of batteries, beyond li...
Nonlithium metals such as sodium have attracted wide attention as a potential charge carrying ion fo...
Sodium-ion batteries are gradually regarded as a prospective alternative to lithium-ion batteries d...
Since the turn of the new century, the increasing demand for high-performance energy storage systems...
To facilitate the commercialization of sodium-ion batteries (SIBs), advanced electrode materials wit...
Sodium-ion batteries are a potentially low-cost and safe alternative to the prevailing lithium-ion b...
Designed as a high-capacity alloy host for Na-ion chemistry, a forest of Sn nanorods with a unique c...
It is challenging to develop alloying anodes with ultrafast charging and large energy storage using ...
Nanostructured tin-based anodes are promising for both lithium and sodium ion batteries (LIBs and SI...
Rechargeable sodium (Na) metal batteries (SMBs) provide an alternative energy-dense, low-cost energy...
Room-temperature Na-ion batteries have attracted great interest as a low cost and environmentally be...
© 2016 Sodium-ion batteries (SIBs) are recognized as an alternative to lithium ion batteries due to ...
Two-dimensional SnS2 are known as potential anodes for Na-ion batteries owing to high energy density...
© 2018 American Chemical Society. Tin (Sn)-based materials are one of most promising candidates for ...
Sodium ion batteries attract increasing attention for large-scale energy storage as a promising alte...
Sodium-ion batteries have been considered as one of the most promising types of batteries, beyond li...
Nonlithium metals such as sodium have attracted wide attention as a potential charge carrying ion fo...
Sodium-ion batteries are gradually regarded as a prospective alternative to lithium-ion batteries d...
Since the turn of the new century, the increasing demand for high-performance energy storage systems...
To facilitate the commercialization of sodium-ion batteries (SIBs), advanced electrode materials wit...
Sodium-ion batteries are a potentially low-cost and safe alternative to the prevailing lithium-ion b...