The charging process of secondary batteries is always associated with a large volume expansion of the alloying anodes, which in many cases, develops high compressive residual stresses near the propagating interface. This phenomenon causes a significant reduction in the rate performance of the anodes and is detrimental to the development of fast-charging batteries. However, for the Na-Sn battery system, the residual stresses that develop near the interface are not stored, but are relieved by the generation of high-density dislocations in crystalline Sn. Direct-contact diffusion experiments show that these dislocations facilitate the preferential transport of Na and accelerate the Na diffusion into crystalline Sn at ultrafast rates via "dislo...
© 2019 American Chemical Society.Sodium superionic conductors are key components of solid-state sodi...
Sodium-ion batteries have attracted considerable interest as an alternative to lithium-ion batteries...
Sodium ion batteries are a promising alternative to current lithium ion battery technology, providin...
The charging process of secondary batteries is always associated with a large volume expansion of th...
High-rate performance and mechanical stability of anode materials are the two important characterist...
Sodiation was performed on crystalline Sn cylinders using an in situ electron microscope to evaluate...
Nonlithium metals such as sodium have attracted wide attention as a potential charge carrying ion fo...
Abstract High performance batteries based on the movement of Li ions in Li x CoO2 have made possible...
Intermetallic compounds such as SnSb are promising anode materials for sodium ion batteries; however...
Intermetallic compounds such as SnSb are promising anode materials for sodium ion batteries; however...
The anisotropic volume expansion of anode materials produces locally inhomogeneous residual stresses...
Sn anodes for Na-ion batteries exhibit a promising initial capacity of 847 mAh g–1, which however, c...
Device failure from diffusion short circuits in microelectronic components occurs via thermally indu...
© 2017 The Electrochemical Society. All rights reserved. Herein, we present a phase-field model (PFM...
The intermediate Li Sn alloy phases during de lithiation are identified, and their dynamic phase tra...
© 2019 American Chemical Society.Sodium superionic conductors are key components of solid-state sodi...
Sodium-ion batteries have attracted considerable interest as an alternative to lithium-ion batteries...
Sodium ion batteries are a promising alternative to current lithium ion battery technology, providin...
The charging process of secondary batteries is always associated with a large volume expansion of th...
High-rate performance and mechanical stability of anode materials are the two important characterist...
Sodiation was performed on crystalline Sn cylinders using an in situ electron microscope to evaluate...
Nonlithium metals such as sodium have attracted wide attention as a potential charge carrying ion fo...
Abstract High performance batteries based on the movement of Li ions in Li x CoO2 have made possible...
Intermetallic compounds such as SnSb are promising anode materials for sodium ion batteries; however...
Intermetallic compounds such as SnSb are promising anode materials for sodium ion batteries; however...
The anisotropic volume expansion of anode materials produces locally inhomogeneous residual stresses...
Sn anodes for Na-ion batteries exhibit a promising initial capacity of 847 mAh g–1, which however, c...
Device failure from diffusion short circuits in microelectronic components occurs via thermally indu...
© 2017 The Electrochemical Society. All rights reserved. Herein, we present a phase-field model (PFM...
The intermediate Li Sn alloy phases during de lithiation are identified, and their dynamic phase tra...
© 2019 American Chemical Society.Sodium superionic conductors are key components of solid-state sodi...
Sodium-ion batteries have attracted considerable interest as an alternative to lithium-ion batteries...
Sodium ion batteries are a promising alternative to current lithium ion battery technology, providin...