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Lithium–Air Batteries: Air-Breathing Challenges and Perspective | ACS Nano
Lithium–Air Batteries: Air-Breathing Challenges and Perspective | ACS Nano

On the Origin and Implications of Li2O2 Toroid Formation in Nonaqueous  Li-O2 Batteries | Center for Interface Science and Catalysis
On the Origin and Implications of Li2O2 Toroid Formation in Nonaqueous Li-O2 Batteries | Center for Interface Science and Catalysis

A new type of sealed rechargeable lithium–lithium oxide battery based on  reversible LiO2/Li2O2 interconversion - Journal of Materials Chemistry A  (RSC Publishing)
A new type of sealed rechargeable lithium–lithium oxide battery based on reversible LiO2/Li2O2 interconversion - Journal of Materials Chemistry A (RSC Publishing)

Schematic illustration of an H-cell type LiO2 battery. b) Reaction... |  Download Scientific Diagram
Schematic illustration of an H-cell type LiO2 battery. b) Reaction... | Download Scientific Diagram

Clean Technol. | Free Full-Text | Lithium-Ion Batteries—The Crux of  Electric Vehicles with Opportunities and Challenges
Clean Technol. | Free Full-Text | Lithium-Ion Batteries—The Crux of Electric Vehicles with Opportunities and Challenges

Molecular Conformational Ensemble of Solvated LiO2 Determines the Growth of  Li2O2 Crystals in Li–Air Batteries | The Journal of Physical Chemistry C
Molecular Conformational Ensemble of Solvated LiO2 Determines the Growth of Li2O2 Crystals in Li–Air Batteries | The Journal of Physical Chemistry C

Potential-Dependent Generation of O2– and LiO2 and Their Critical Roles in  O2 Reduction to Li2O2 in Aprotic Li–O2 Batteries | The Journal of Physical  Chemistry C
Potential-Dependent Generation of O2– and LiO2 and Their Critical Roles in O2 Reduction to Li2O2 in Aprotic Li–O2 Batteries | The Journal of Physical Chemistry C

Frontiers | Advances in Lithium–Oxygen Batteries Based on Lithium Hydroxide  Formation and Decomposition
Frontiers | Advances in Lithium–Oxygen Batteries Based on Lithium Hydroxide Formation and Decomposition

Lithium–Oxygen Batteries and Related Systems: Potential, Status, and Future  | Chemical Reviews
Lithium–Oxygen Batteries and Related Systems: Potential, Status, and Future | Chemical Reviews

Chemists make breakthrough on road to creating a rechargeable  lithium-oxygen battery
Chemists make breakthrough on road to creating a rechargeable lithium-oxygen battery

Exploration of LiO2 by the method of electrochemical quartz crystal  microbalance in TEGDME based Li-O2 battery - ScienceDirect
Exploration of LiO2 by the method of electrochemical quartz crystal microbalance in TEGDME based Li-O2 battery - ScienceDirect

A long-life lithium-oxygen battery via a molecular quenching/mediating  mechanism | Science Advances
A long-life lithium-oxygen battery via a molecular quenching/mediating mechanism | Science Advances

The Research Progress of Lithium Oxygen Battery in SCI. China Mater  Reported by Yong Zhao's Group-河南大学材料学院
The Research Progress of Lithium Oxygen Battery in SCI. China Mater Reported by Yong Zhao's Group-河南大学材料学院

Aprotic lithium air batteries with oxygen-selective membranes | Materials  for Renewable and Sustainable Energy
Aprotic lithium air batteries with oxygen-selective membranes | Materials for Renewable and Sustainable Energy

Identifying the Role of Lewis‐base Sites for the Chemistry in  Lithium‐Oxygen Batteries - Zhao - Angewandte Chemie International Edition -  Wiley Online Library
Identifying the Role of Lewis‐base Sites for the Chemistry in Lithium‐Oxygen Batteries - Zhao - Angewandte Chemie International Edition - Wiley Online Library

Reversible Discharge Products in Li–Air Batteries - Liu - 2023 - Advanced  Materials - Wiley Online Library
Reversible Discharge Products in Li–Air Batteries - Liu - 2023 - Advanced Materials - Wiley Online Library

Tuning Li2O2 Formation Routes by Facet Engineering of MnO Cathode Catalysts
Tuning Li2O2 Formation Routes by Facet Engineering of MnO Cathode Catalysts

Tuning lithium-peroxide formation and decomposition routes with single-atom  catalysts for lithium–oxygen batteries | Nature Communications
Tuning lithium-peroxide formation and decomposition routes with single-atom catalysts for lithium–oxygen batteries | Nature Communications

Predicting Chemical Pathways for Li-O2 Batteries - Joint Center for Energy  Storage Research
Predicting Chemical Pathways for Li-O2 Batteries - Joint Center for Energy Storage Research

New design for lithium-air battery could offer much longer driving range  compared with the lithium-ion battery | Argonne National Laboratory
New design for lithium-air battery could offer much longer driving range compared with the lithium-ion battery | Argonne National Laboratory

New lithium-oxygen battery greatly improves energy efficiency, longevity |  MIT News | Massachusetts Institute of Technology
New lithium-oxygen battery greatly improves energy efficiency, longevity | MIT News | Massachusetts Institute of Technology

High‐Performance Lithium–Oxygen Batteries Using a Urea‐Based Electrolyte  with Kinetically Favorable One‐Electron Li2O2 Oxidation Pathways - Sun -  2022 - Angewandte Chemie International Edition - Wiley Online Library
High‐Performance Lithium–Oxygen Batteries Using a Urea‐Based Electrolyte with Kinetically Favorable One‐Electron Li2O2 Oxidation Pathways - Sun - 2022 - Angewandte Chemie International Edition - Wiley Online Library

NUERC
NUERC

Controlling Reversible Expansion of Li2O2 Formation and Decomposition by  Modifying Electrolyte in Li-O2 Batteries
Controlling Reversible Expansion of Li2O2 Formation and Decomposition by Modifying Electrolyte in Li-O2 Batteries

Understanding oxygen electrochemistry in aprotic LiO2 batteries -  ScienceDirect
Understanding oxygen electrochemistry in aprotic LiO2 batteries - ScienceDirect

Understanding oxygen electrochemistry in aprotic LiO2 batteries -  ScienceDirect
Understanding oxygen electrochemistry in aprotic LiO2 batteries - ScienceDirect

ASAP] True Reaction Sites on Discharge in LiO2 Batteries - Research
ASAP] True Reaction Sites on Discharge in LiO2 Batteries - Research