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[1] Simultaneously promoting the surface/bulk structural stability of Fe/Mn-based layered cathode for sodium ion batteries
[2] Relieving Stress Concentration through Anion-Cation Codoping toward Highly Stable Nickel-Rich Cathode
[3] Multifunctional optimization enabled by the space design of a nontoxic fluoride protective layer for dendrites-free and corrosion-resistant zinc anodes
[4] Synergetic design of a coralline-like Si/Ni/C anode material with microstructure and gradient interface for lithium-ion batteries
[5] High-rate capability of carbon-coated micron-sized hexagonal TT-Nb2O5 composites for lithium-ion battery
[6] Improving the Structure Stability of LiNi0.8Co0.15Al0.05O2 by Double Modification of Tantalum Surface Coating and Doping
[7] Facile synthesis of Si/NiSi2/C composite derived from metal-organic frameworks for high-performance lithium-ion battery anode
[8] Sphere-like TiO2/Si anode material with superior performance for lithium ion batteries
[9] Comparison of fluorine sources on the electrochemical property of Li1.2Ni0.2Mn0.6O2cathode materials
[10] Comparison of structural and electrochemical properties of LiNi0.8Co0.15Al0.05O2 with Li site doping by different cations Applied Surface Science, 2022,
[11] Design and tailoring of carbon-Al2O3 double coated nickel-based cation-disordered cathodes towards high-performance Li-ion batteries Nano Energy, 2022,
[12] Magnesium Ion Doping and Micro-Structural Engineering Assist NH4V4O10 as a High-Performance Aqueous Zinc Ion Battery Cathode Advanced Functional Materials, 2023,
[13] La4NiLiO8-assistant surface reconstruction to realize in-situ regeneration of the degraded nickel-rich cathodes Chemical Engineering Journal, 2023,
[14] Insight into the Effect of Cu2+ Doping on CuxNb2−xO5−3/2x for High- Power Lithium-Ion Batteries ACS Sustainable Chemistry & Engineering, 2023,
[15] Metallurgy of aluminum-inspired formation of aluminosilicatecoated nanosilicon for lithium-ion battery anode Rare Metals, 2022,
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