Angewandte Chemie · 2022 · 26 citations · 68 references
EngineeringElectrode-electrolyte InterfaceChemistryHigh CapacityChemical EngineeringHybrid MaterialsAs‐assembled InterlayerMaterials ScienceBattery Electrode MaterialsAdvanced Electrode MaterialLithium-ion BatteryEnergy StorageAdvanced Lithium–sulfur BatteriesSolid-state BatteryEnergy MaterialElectrochemistryLi-ion Battery MaterialsElectrochemical Energy StorageBatteriesFunctional MaterialsFunctional Interlayer
Abstract We have successfully constructed a new type of intercalation membrane material by covalently grafting organic tris(hydroxypropyl)phosphine (THPP) molecules onto hydroxylated multi‐walled carbon nanotubes (CNT‐OH) as a functional interlayer for the advanced LSBs. The as‐assembled interlayer has been demonstrated to be responsible for the fast conversion kinetics of polysulfides, the inhibition of polysulfide shuttle effect, as well as the formation of a stable solid electrolyte interphase(SEI) layer. By means of spectroscopic and electrochemical analysis, we further found THPP plays a key role in accelerating the conversion of polysulfides into low‐ordered lithium sulfides and suppressing the loss of polysulfides, thus rendering the as‐designed lithium–sulfur battery in this work a high capacity, excellent rate performance and long‐term stability. Even at low temperatures, the capacity decay rate was only 0.036 % per cycle for 1700 cycles.
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Michel Armand, J.-M. Tarascon · Nature · 2008 · 19K citations
Li–O2 and Li–S batteries with high energy storage
Peter G. Bruce, Stefan A. Freunberger, Laurence J. Hardwick et al. · Nature Materials · 2011 · 9.3K citations
Electrical Engineering, Engineering, Battery Electrode Materials +8