Solid polymer electrolyte (SPE) shows great potential for all-solid-state batteries because of the inherent safety and flexibility; however, the unfavourable Li+ deposition and large thickness hamper its development and application. Herein, a laminar MXene functional layer‒thin SPE layer‒cathode integration (MXene-PEO-LFP) is designed and fabricated. The MXene functional layer formed by stacking rigid MXene nanosheets imparts higher compressive strength relative to PEO electrolyte layer. And the abundant negatively-charged groups on MXene functional layer effectively repel anions and attract cations to adjust the charge distribution behavior at electrolyte–anode interface. Furthermore, the functional layer with rich lithiophilic groups and ...
Solid polymer electrolytes (SPEs) with profound compatibility for high-voltage cathodes and reliable...
The interface issues of electrodes/solid-state electrolytes have been limiting the application of ro...
Solid electrolyte is vital for solid-state lithium batteries with higher energy and power densities....
Polyethylene oxide (PEO) based polymer electrolytes is promising for all-solid-state lithium metal b...
Poly(ethylene oxide) (PEO)-based solid polymer electrolytes (SPEs) are favorable for all-solid-state...
The pursuit of reliable and high-performance batteries has fueled extensive research into new batter...
Abstract Polyethylene oxide (PEO)‐based polymer solid electrolytes (PSE) have been pursued for the n...
Here we demonstrate that by regulating the mobility of classic −EO− based backbones, an innovative p...
The present surge in demand for energy storage systems that offer both high energy density and enhan...
Lithium metal is one of the most promising anode candidates for high-energy-density rechargeable bat...
© 2018 The Electrochemical Society. The scalable multifunctional solid electrolyte (MSE) composed of...
Lithium metal batteries (LMBs) are promising next-generation battery technologies with high energy d...
Abstract The interest for solid‐state lithium metal (Li°) batteries (SSLMBs) has been growing expone...
To go beyond polyethylene oxide in lithium metal batteries, a hybrid polymer/oligomer cell design is...
Considering the safety issues of Li ion batteries, an all-solid-state polymer electrolyte has been o...
Solid polymer electrolytes (SPEs) with profound compatibility for high-voltage cathodes and reliable...
The interface issues of electrodes/solid-state electrolytes have been limiting the application of ro...
Solid electrolyte is vital for solid-state lithium batteries with higher energy and power densities....
Polyethylene oxide (PEO) based polymer electrolytes is promising for all-solid-state lithium metal b...
Poly(ethylene oxide) (PEO)-based solid polymer electrolytes (SPEs) are favorable for all-solid-state...
The pursuit of reliable and high-performance batteries has fueled extensive research into new batter...
Abstract Polyethylene oxide (PEO)‐based polymer solid electrolytes (PSE) have been pursued for the n...
Here we demonstrate that by regulating the mobility of classic −EO− based backbones, an innovative p...
The present surge in demand for energy storage systems that offer both high energy density and enhan...
Lithium metal is one of the most promising anode candidates for high-energy-density rechargeable bat...
© 2018 The Electrochemical Society. The scalable multifunctional solid electrolyte (MSE) composed of...
Lithium metal batteries (LMBs) are promising next-generation battery technologies with high energy d...
Abstract The interest for solid‐state lithium metal (Li°) batteries (SSLMBs) has been growing expone...
To go beyond polyethylene oxide in lithium metal batteries, a hybrid polymer/oligomer cell design is...
Considering the safety issues of Li ion batteries, an all-solid-state polymer electrolyte has been o...
Solid polymer electrolytes (SPEs) with profound compatibility for high-voltage cathodes and reliable...
The interface issues of electrodes/solid-state electrolytes have been limiting the application of ro...
Solid electrolyte is vital for solid-state lithium batteries with higher energy and power densities....