The stability of the interfacial layers depends mainly on the composition and distribution of the decomposition products from solid-state electrolytes (SSEs) in lithium metal batteries. Therefore, the design of SSEs becomes an attractive way to construct a homogeneous stable interfacial layer. Herein, pentafluorostyrene (PFS) as a block is used to generate robust interfacial layers for solid-state batteries. Meanwhile, PFS facilitates the dissociation of lithium salts to produce more free Li-ions which can enhance the ionic conductivity from the results of 7Li solid-state NMR spectra, density functional theory, and molecular dynamics calculations. Subsequently, XPS depth etching and TOF-SIMS characterizations together show that the gradient...
First-principles calculations were performed to investigate the electrochemical stability of lithium...
The development of commercial solid-state batteries has to date been hindered by the individual limi...
A key challenge for solid-state-batteries development is to design electrode-electrolyte interfaces ...
The stability of the interfacial layers depends mainly on the composition and distribution of the de...
All-solid-state batteries (ASSBs), in which solid superionic conductors are used as electrolytes to ...
Thesis (Ph.D.)--University of Washington, 2019All Solid-state Batteries (ASSBs), enabled by solid el...
The pursuit of reliable and high-performance batteries has fueled extensive research into new batter...
The poor compatibility of the electrodes/solid-state electrolytes (SSEs) interfaces of rechargeable ...
© 2022 American Chemical Society. All rights reserved.A variety of electrolyte engineering strategie...
Development of high conductivity solid-state electrolytes for lithium ion batteries has proceeded ra...
Emergent technologies, such as electric vehicles and grid energy storage, are driving iterations of ...
All-solid-state batteries have attracted significant research interest for potentially providing hig...
All-solid-state lithium batteries (ASSLBs) have become increasingly attractive due to the demand of ...
The current commercial lithium ion battery utilizes “host-guest” electrodes that allow for the inter...
The application of flexible, robust, and low cost solid polymer electrolytes in next generation all ...
First-principles calculations were performed to investigate the electrochemical stability of lithium...
The development of commercial solid-state batteries has to date been hindered by the individual limi...
A key challenge for solid-state-batteries development is to design electrode-electrolyte interfaces ...
The stability of the interfacial layers depends mainly on the composition and distribution of the de...
All-solid-state batteries (ASSBs), in which solid superionic conductors are used as electrolytes to ...
Thesis (Ph.D.)--University of Washington, 2019All Solid-state Batteries (ASSBs), enabled by solid el...
The pursuit of reliable and high-performance batteries has fueled extensive research into new batter...
The poor compatibility of the electrodes/solid-state electrolytes (SSEs) interfaces of rechargeable ...
© 2022 American Chemical Society. All rights reserved.A variety of electrolyte engineering strategie...
Development of high conductivity solid-state electrolytes for lithium ion batteries has proceeded ra...
Emergent technologies, such as electric vehicles and grid energy storage, are driving iterations of ...
All-solid-state batteries have attracted significant research interest for potentially providing hig...
All-solid-state lithium batteries (ASSLBs) have become increasingly attractive due to the demand of ...
The current commercial lithium ion battery utilizes “host-guest” electrodes that allow for the inter...
The application of flexible, robust, and low cost solid polymer electrolytes in next generation all ...
First-principles calculations were performed to investigate the electrochemical stability of lithium...
The development of commercial solid-state batteries has to date been hindered by the individual limi...
A key challenge for solid-state-batteries development is to design electrode-electrolyte interfaces ...