Stable all-solid-state battery enabled with Li6.25PS5.25Cl0.75 as fast ion-conducting electrolyte

来源 :能源化学 | 被引量 : 0次 | 上传用户:pppp7799
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
All-solid-state batteries (ASSB) with lithium anode have attracted ever-increasing attention towards developing safer batteries with high energy densities.While great advancement has been achieved in developing solid electrolytes (SE) with superb ionic conductivity rivalling that of the current liquid technology,it has yet been very difficult in their successful application to ASSBs with sustaining rate and cyclic performances.Here in this work,we have realized a stable ASSB using the Li6.25PS5.25Cl0.75 fast ionconducting electrolyte together with LiNbO3 coated LiCoO2 as cathode and lithium foil as the anode.The effective diffusion coefficient of Li-ions in the battery is higher than 10-12 cm2 s-1,and the significantly enhanced electrochemical matching at the cathode-electrolyte interface was essential to enable long-term stability against high oxidation potential,with the LCO@LNO/Li6.25PS5.25Cl0.75/Li battery to retain 74.12% capacity after 430 cycles at 100 μA cm-2 and 59.7% of capacity after 800 cycles at 50 μA cm-2,at a high charging cut-off voltage of 4.2 V.This demonstrates that the Li6.25PS5.25Cl0.75 can be an excellent electrolyte for the realization of stable ASSBs with high-voltage cathodes and metallic lithium as anode,once the electrochemical compatibility between cathode and electrolyte can be addressed with a suitable buffer coating.
其他文献
Lithium metal,as the most ideal anode material for high energy density batteries,has been researched for several decades.However,the dendrite formation and larg
Transition metal selenides have been widely studied as anode materials of sodium ion batteries(SIBs),however,the investigation of solid-electrolyte-interface(SE
Lithium-sulfur(Li-S) battery is regarded as one of the most fascinating candidates for energy storage due to its dominant advantage of high energy density.However,the shuttling effect of soluble polysulfides and low electrical conductivity of sulfur and L
Hydrogen is considered an attractive alternative to fossil fuels,but only a small amount of it is produced from renewable energy,making it not such a clean ener
Ammonia borane(NH3BH3,AB) is promising for chemical hydrogen sto rage;however,current systems for rapid hydrogen production are limited by the expensive noble metal catalysts required for AB hydrolysis.Here we report the design and s
High-performance materials are the key to developing new alternative energy-storage systems[1-4].Sodium ion batteries(SIBs)are regarded as the promising large-s
Lithium-sulfur (Li-S) batteries are promising energy-storage devices for future generations of portable electronics and electric vehicles because of the outstan
Molecular ordering within the photoactive layer plays a crucial role in determining the device perfor-mance of organic solar cells(OSCs).However,the simultaneou
Development of high-performance and cost-effective catalysts for electrocatalytic hydrogen evolution reaction (HER) play crucial role in the growing hydrogen ec
In this work,a facile chelation-mediated route was developed to fabricate ultrathin cobalt (oxy)hydroxides (CoOOH) nanosheets on hematite photoanode (Fe2O3).The