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Li- and Na-ion Storage Performance of Natural Graphite via Simple Flotation Process
Noureddine Ait Laziz, John Abou-Rjeily, Ali Darwiche, Joumana Toufaily, Abdelkader Outzourhit, Fouad Ghamouss, Moulay Tahar Sougrati
J. Electrochem. Sci. Technol. 2018;9(4):320-329.   Published online December 31, 2018
DOI: https://doi.org/10.5229/JECST.2018.9.4.320

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Li- and Na-ion Storage Performance of Natural Graphite via Simple Flotation Process
Journal of Electrochemical Science and Technology. 2018;9(4):320-329   Crossref logo
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Na/Li‐Ion Batteries: S‐Doped Carbon Fibers Uniformly Embedded with Ultrasmall TiO 2 for Na + /Li + Storage with High Capacity and Long‐Time Stability (Small 38/2019)
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Carbon Derived from Pine Needles as a Na+ -Storage Electrode Material in Dual-Ion Batteries
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Enhancing the Rapid Na+-Storage Performance via Electron/Ion Bridges through GeS2/Graphene Heterojunction
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Emerging alkali metal ion (Li+, Na+, K+ and Rb+) doped perovskite films for efficient solar cells: recent advances and prospects
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Significant enhancement of scintillation performance by inducing oxygen vacancies in alkali metal ion (A+ = Li+, Na+, K+)-incorporated (Lu, Sc)BO3:Ce
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Soybean CHX‐type ion transport protein GmSALT3 confers leaf Na+exclusion via a root derived mechanism, and Cl exclusion via a shoot derived process
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Li+, Na+ co-stabilized vanadium oxide nanobelts with a bilayer structure for boosted zinc-ion storage performance
Journal of Materials Chemistry A. 2022;10(40):21531-21539   Crossref logo
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