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DEMS金属电池相关文献

发表时间:2024-04-18 11:23:49  |  点击率:322

1.A High-Performance Li–O2 Battery with a Strongly Solvating Hexamethylphosphoramide Electrolyte and a LiPON-Protected Lithium Anode

DEMS-长春应化所-锂氧.pdf

2.Oxygen vacancy-rich MoO3 nanorods as photocatalysts for photo-assisted Li–O2 batteries 

HPR20-吉林大学-锂氧.pdf

3.Uncovering LiH Triggered Thermal Runaway Mechanism of a High-Energy LiNi0.5Co0.2Mn0.3O2/Graphite Pouch Cell

HPR20-青岛能源所-锂离子.pdf

4.Bismuth−Article AntimonyArticle Alloy Embedded in Carbon Matrix for Ultra-Stable Sodium Storage

HPR20-山东大学-电池7.pdf

5.Stabilizing oxygen by high‐valance element doping for high‐performance Li‐rich layered oxides

HPR20-锂电-北工大.pdf

6.Lithium Salt Dissociation Promoted by 18-Crown-6 Ether Additive toward Dilute Electrolytes for High Performance Lithium Oxygen Batteries

DEMS-锂电-北理工.pdf

7.Decoupling mass transport and electron transfer by a double-cathode structure of a Li-O2 battery with high cyclic stability

HPR40-锂电-河南大学.pdf

8.Oxygen Anion Redox Chemistry Correlated with Spin State in Ni-Rich Layered Cathodes

HPR20-中科院大学-锂电.pdf

9.Gas induced formation of inactive Li in rechargeable lithium metal batteries

HPR20-厦门大学-锂金属电池.pdf

10.Priority Lithium recovery from spent Li-ion batteries via carbothermal reduction with water leaching

HPR20-锂离子.pdf

11.Thermal Enhancement of Product Conductivity Permits Deep Discharge in Solid State Li-O2 Batteries 

HPR40科罗拉多-锂氧-.pdf

12.Regio-isomerism Directed Electrocatalysis for Energy Efficient Zinc-air Battery 

HPR40-锌空气电池.pdf

13.Mastering the synergy between Na3V2(PO4)2F3 electrode and electrolyte: A must for Na-ion cells

EXQ-钠离子电池.pdf

14.Chemical Reaction Networks Explain Gas Evolution Mechanisms in Mg-Ion Batteries

HPR40-镁离子电池.pdf

15.Improved Electrochemical Behavior and Thermal Stability of Li and Mn-Rich Cathode Materials Modified by Lithium Sulfate Surface Treatment

HPR40-锂离子电池2022.pdf

16.“Water-in-deep eutectic solvent” electrolytes enable zinc metal anodes for rechargeable aqueous batteries

HPR20-青岛能源所电池.pdf

17.Approaching the limits of cationic and anionic electrochemical activity with the Li-rich layered rocksalt Li3IrO4

DEMS-锂离子2017.pdf

18.Verifying the Rechargeability of Li-CO2 Batteries  on Working Cathodes of Ni Nanoparticles Highly Dispersed on N-Doped Graphene

DEMS-南开大学-长春应化所Li-CO2.pdf

19.Photoactive Zn-Air-Batteries Using Spinel-Type Cobalt Oxide as a Bifunctional Photocatalyst at the Air Cathode

HPR40-锌空气电池.pdf

20.A lithium–oxygen battery based on lithium superoxide

HPR40-锂氧电池.pdf

21.Enabling the high capacity of lithium-rich anti-fluorite lithium iron oxide by simultaneous anionic and cationic redox

HPR40-锂离子.pdf

22.Failure and hazard characterisation of high-power lithium-ion cells via coupling accelerating rate calorimetry with in-line mass spectrometry, statistical and post-mortem analyses

QGA-锂氧电池.pdf

23.Controlling Li Dendritic Growth in Graphite Anodes by Potassium Electrolyte Additives for Li-Ion Batteries

EQS-锂氧电池.pdf

24.Bridging the Gap Between Microstructurally Resolved Computed Tomography-Based and Homogenised Doyle-Fuller-Newman Models for Lithium-Ion Batteries

EQS-锂氧电池2.pdf


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