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Effects of Triple Modification Of Sodium Hypophosphite on Structure and Electrochemical Performances of Lithium-Rich Manganese-Based Cathode Materials

https://doi.org/10.2139/ssrn.4114032
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Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

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The 21 checked references that resolve
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Recent breakthroughs and perspectives of high-energy layered oxide cathode materials for lithium ion batteries
resolves10.1038/s41560-018-0097-0
Fundamental understanding and practical challenges of anionic redox activity in Li-ion batteries
resolves10.1038/s41560-018-0207-z
Evolution of redox couples in Li- and Mn-rich cathode materials and mitigation of voltage fade by reducing oxygen release
resolves10.1021/acs.chemmater.9b03245
Layered Oxide Cathodes for Li-Ion Batteries: Oxygen Loss and Vacancy Evolution
resolves10.1038/s41560-021-00780-2
The role of O2 in O-redox cathodes for Li-ion batteries
resolves10.1039/D0EE01694B
Li-rich cathodes for rechargeable Li-based batteries: reaction mechanisms and advanced characterization techniques
resolves10.1002/anie.202000262
Reaction Mechanisms of Layered Lithium‐Rich Cathode Materials for High‐Energy Lithium‐Ion Batteries
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Suppressing voltage fading and improving cycling stability of Li-rich Mn-based materials by introducing MgSO <sub>4</sub>
resolves10.1021/cm502201z
Differential Electrochemical Mass Spectrometry Study of the Interface of <i>x</i>Li<sub>2</sub>MnO<sub>3</sub>·(1–<i>x</i>)LiMO<sub>2</sub> (M = Ni, Co, and Mn) Material as a Positive Electrode in Li-Ion Batteries
resolves10.1021/acsami.8b13158
Origin of Carbon Dioxide Evolved during Cycling of Nickel-Rich Layered NCM Cathodes
resolves10.1038/s41467-017-02291-9
Fundamental interplay between anionic/cationic redox governing the kinetics and thermodynamics of lithium-rich cathodes
resolves10.1021/acssuschemeng.9b07792
Enhancing High-Temperature and High-Voltage Performances of Single-Crystal LiNi<sub>0.5</sub>Co<sub>0.2</sub>Mn<sub>0.3</sub>O<sub>2</sub> Cathodes through a LiBO<sub>2</sub>/LiAlO<sub>2</sub> Dual-Modification Strategy
resolves10.1016/j.jpowsour.2017.05.028
Improved electrochemical performances of Li-rich nickel cobalt manganese oxide by partial substitution of Li + by Mg 2+
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Effects of Nanofiber Architecture and Antimony Doping on the Performance of Lithium-Rich Layered Oxides: Enhancing Lithium Diffusivity and Lattice Oxygen Stability
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Oxygen defect engineering for the Li-rich cathode material Li <sub>1.2</sub> Ni <sub>0.13</sub> Co <sub>0.13</sub> Mn <sub>0.54</sub> O <sub>2−δ</sub>
resolves10.1002/anie.202000628
An Ultra‐Long‐Life Lithium‐Rich Li <sub>1.2</sub> Mn <sub>0.6</sub> Ni <sub>0.2</sub> O <sub>2</sub> Cathode by Three‐in‐One Surface Modification for Lithium‐Ion Batteries
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First-cycle voltage hysteresis in Li-rich 3d cathodes associated with molecular O2 trapped in the bulk
resolves10.1021/acsami.9b21271
In Situ Construction of Spinel Coating on the Surface of a Lithium-Rich Manganese-Based Single Crystal for Inhibiting Voltage Fade
resolves10.1016/j.jechem.2021.01.020
Suppress voltage decay of lithium-rich materials by coating layers with different crystalline states
resolves10.1016/j.jpowsour.2017.11.042
Improving the electrochemical performances of Li-rich Li1.20Ni0.13Co0.13Mn0.54O2 through a cooperative doping of Na+ and PO43− with Na3PO4
The 23 references without a DOI — listed, not checked
no DOI — not checkedRecent advances and historical developments of high voltage lithium cobalt oxide materials for rechargeable Li-ion batteries
no DOI — not checkedA review on progress of lithium-rich manganese-based cathodes for lithium ion batteries
no DOI — not checkedRecent developments and challenges of Li-rich Mn-based cathode materials for high-energy lithium-ion batteries
no DOI — not checkedChallenges and Recent Advances in High Capacity Li-Rich Cathode Materials for High Energy Density Lithium-Ion Batteries
no DOI — not checkedReaction inhomogeneity coupling with metal rearrangement triggers electrochemical degradation in lithium-rich layered cathode
no DOI — not checkedCoupling of electrochemically triggered thermal and mechanical effects to aggravate failure in a layered cathode
no DOI — not checkedEnhanced performance of a Ni-rich LiNi 0.8 Co 0.1 Mn 0.1 O 2 cathode material formed through Taylor flow synthesis and surface modification with Li 2 MoO 4
no DOI — not checkedEnhanced Cathode Performance: Mixed Al 2 O 3 and LiAlO 2 Coating of Li 1.2 Ni 0.13 Co 0.13 Mn 0.54 O 2
no DOI — not checkedSurface Doping to Enhance Structural Integrity and Performance of Li-Rich Layered Oxide
no DOI — not checkedGas-solid interfacial modification of oxygen activity in layered oxide cathodes for lithium-ion batteries
no DOI — not checkedImproving the oxygen redox reversibility of Li-rich battery cathode materials via Coulombic repulsive interactions strategy
no DOI — not checkedIn-situ construction protective layer and phosphate doping synergistically improve the long-term cycle stability of LiNi 0.6 Co 0.1 Mn
no DOI — not checkedIntegrated co-modification of PO 4 3? polyanion doping and Li 2 TiO 3 25 coating for Ni-rich layered LiNi 0.6 Co 0.2 Mn 0.2 O 2 cathode material of Lithium-Ion batteries
no DOI — not checkedEnhancing the Kinetics of Li-Rich Cathode Materials through the Pinning Effects of Gradient Surface Na + Doping
no DOI — not checkedHierarchically Structured Lithium-Rich Layered Oxide with Exposed Active {010} Planes as High-Rate-Capability Cathode for Lithium-Ion Batteries
no DOI — not checkedSuppressing the Voltage Decay Based on a Distinct Stacking Sequence of Oxygen Atoms for Li-Rich Cathode Materials
no DOI — not checkedIn-situ surface chemical and structural self-reconstruction strategy enables high performance of Li-rich cathode
no DOI — not checkedBoosting Electrochemical Performance of Lithium-Rich Manganese-Based Cathode Materials through a Dual Modification Strategy with Defect Designing and Interface Engineering
no DOI — not checkedNa-substitution induced oxygen vacancy achieving high transition metal capacity in commercial Li-rich cathode
no DOI — not checkedInsights into Li-Rich Mn-Based Cathode Materials with High Capacity: from Dimension to Lattice to Atom
no DOI — not checkedUnderstanding electrochemical performance improvement with Nb doping in lithium-rich manganese-based cathode materials
no DOI — not checkedSurface modification of Li-rich layered Li(Li 0.17 Ni 0.25 Mn 0.58 )O 2 oxide with Li-Mn-PO 4 as the cathode for lithium-ion batteries
no DOI — not checkedCoordination interaction boosts energy storage in rechargeable Al battery with a positive electrode material of CuSe
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