Electrolyte solvation chemistry for lithium-sulfur batteries with electrolyte-lean conditions

来源 :能源化学 | 被引量 : 0次 | 上传用户:tanya1005
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
Lithium-sulfur(Li-S)batteries possess overwhelming energy density of 2654 Wh kg-1,and are consid-ered as the next-generation battery technology for energy demanding applications.Flooded electrolytes are ubiquitously employed in cells to ensure sufficient redox kinetics and preclude the interference of the electrolyte depletion due to side reactions with the lithium metal anode.This strategy is capable of enabling long-lasting,high-capacity and excellent-rate battery performances,but it mask the require-ments of practical Li-S batteries,where high-sulfur-loading/content and lean electrolyte are prerequisite to realize the energy-dense Li-S batteries.Sparingly and highly solvating electrolytes have emerged as effective yet simple approaches to decrease the electrolyte/sulfur ratio through altering sulfur species and exerting new reaction pathways.Sparingly solvating electrolytes are characterized by few free sol-vents to solvate lithium polysulfides,rendering a quasi-solid sulfur conversion and decoupling the reac-tion mechanisms from electrolyte quantity used in cells;while highly solvating electrolytes adopt high-donicity or high-permittivity solvents and take their advantages of strong solvation ability toward poly-sulfide intermediates,thereby favoring the polysulfide formation and stabilizing unique radicals,which subsequently accelerate redox kinetics.Both solvation chemistry approaches have their respective fea-tures to allow the operation of cells under electrolyte-starved conditions.This Review discusses their unique features and basic physicochemical properties in the working Li-S batteries,presents remaining technical and scientific issues and provides future directions for the electrolyte chemistry to attain high-energy Li-S batteries.
其他文献
Metal-free g-C3N4 is widely used in photocatalytic reactions owing to its suitable band structure.However,it has low specific surface area and insufficient abso
Developing low-priced,yet effective and robust catalysts for the nitrogen reduction reaction(NRR) is of vital importance for scalable and renewable electrochemical NH3 synthesis.Herein,we provide the first demonstration of MoS_3 as an efficient and durabl
The hydrogen evolution reaction(HER)via water electrolysis has gained immense research attention.Seawater electrolysis provides great opportunities for sustaina
Lithium-sulfur (Li-S) batteries hold great promises to serve as next-generation energy storage devices because of their high theoretical energy density and envi
Nanostructured scaffolds offer promising opportunities in enabling dendrite-free long-cycle life Li metal anode.The rational design and controllable synthesis of scaffolding architectures are imperative for development of rechargeable Li metal batteries.I
Fast charging and high-power delivering batteries are highly demanded in mobile electronics,electric vehicles and grid energy storage,but there are full of chal
With the rapid exhaustion of fossil energy, the demand for clean and renewable energy is urgently growing. Thermoelectric(TE) materials, which can directly convert waste heat into electrical energy, are attracting great attention to address the energy cri
With the development of stable alkali metal anodes,V2O5 is gaining traction as a cathode material due to its high theoretical capacity and the ability to interc
A composite In-Pb:carbon was successfully synthetized by a two-step mechanochemical synthesis in order to obtain an adequate particles size and structure to inv
A controllable crystallization is of practical importance to produce high-quality perovskite thin films with reduced structural defects.Lewis bases as electron-