a) Comparison of the discharge capacity and coulombic efficiency of
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Structural effects on the enhancement of first-cycle Coulombic efficiency of mangrove-derived hard carbon as an anode material in sodium ion batteries
High Stability and Long Cycle Life of Rechargeable Sodium-Ion Battery Using Manganese Oxide Cathode: A Combined Density Functional Theory (DFT) and Experimental Study
How to read battery cycling curves - BioLogic Learning Center
Further Improving Coulombic Efficiency and Discharge Capacity in LiNiO2 Material by Activating Sluggish ∼3.5 V Discharge Reaction
Consumption of Fluoroethylene Carbonate Electrolyte-Additive at the Si–Graphite Negative Electrode in Li and Li-Ion Cells
Offset Initial Sodium Loss To Improve Coulombic Efficiency and Stability of Sodium Dual-Ion Batteries
Sn Anodes Protected by Intermetallic FeSn2 Layers for Long‐lifespan Sodium‐ion Batteries with High Initial Coulombic Efficiency of 93.8 % - Chen - 2023 - Angewandte Chemie International Edition - Wiley Online Library
Long‐life lithium batteries enabled by a pseudo‐oversaturated electrolyte - Yu - Carbon Energy - Wiley Online Library
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Cycle capacity and Coulombic efficiency of MnO2@HCF/S in comparison
Achieving high initial coulombic efficiency and low voltage dropping in Li-rich Mn-based cathode materials by Metal-Organic frameworks-derived coating - ScienceDirect
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