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Correlation between manganese dissolution and dynamic phase stability in  spinel-based lithium-ion battery | Nature Communications
Correlation between manganese dissolution and dynamic phase stability in spinel-based lithium-ion battery | Nature Communications

Energies | Free Full-Text | Lithiated Manganese-Based Materials for Lithium- Ion Capacitor: A Review
Energies | Free Full-Text | Lithiated Manganese-Based Materials for Lithium- Ion Capacitor: A Review

For polyatomic ions like MnO4^- and Cr2O7^2-, are the manganate/chromium  covalent or ionic bonded to the oxygen. Based on diagrams I see online, it  seems to be covalent but why is this
For polyatomic ions like MnO4^- and Cr2O7^2-, are the manganate/chromium covalent or ionic bonded to the oxygen. Based on diagrams I see online, it seems to be covalent but why is this

The unique microsphere of ruthenium manganate: Synthesis, structure  elucidation, morphology analyses and magnetic property - ScienceDirect
The unique microsphere of ruthenium manganate: Synthesis, structure elucidation, morphology analyses and magnetic property - ScienceDirect

Understanding Degradation at the Lithium-Ion Battery Cathode/Electrolyte  Interface: Connecting Transition-Metal Dissolution Mechanisms to  Electrolyte Composition | ACS Applied Materials & Interfaces
Understanding Degradation at the Lithium-Ion Battery Cathode/Electrolyte Interface: Connecting Transition-Metal Dissolution Mechanisms to Electrolyte Composition | ACS Applied Materials & Interfaces

Breaking Free from Cobalt Reliance in Lithium-Ion Batteries - ScienceDirect
Breaking Free from Cobalt Reliance in Lithium-Ion Batteries - ScienceDirect

PDF) High Performance LiMn2O4 Cathode Materials Grown with Epitaxial  Layered Nanostructure for Li-Ion Batteries
PDF) High Performance LiMn2O4 Cathode Materials Grown with Epitaxial Layered Nanostructure for Li-Ion Batteries

Core-shell structure of LiMn2O4 cathode material reduces phase transition  and Mn dissolution in Li-ion batteries | Communications Chemistry
Core-shell structure of LiMn2O4 cathode material reduces phase transition and Mn dissolution in Li-ion batteries | Communications Chemistry

Fluorinated Materials as Positive Electrodes for Li- and Na-Ion Batteries |  Chemical Reviews
Fluorinated Materials as Positive Electrodes for Li- and Na-Ion Batteries | Chemical Reviews

Cathode Interfacial Layer Formation via in Situ Electrochemically Charging  in Aqueous Zinc-Ion Battery | ACS Nano
Cathode Interfacial Layer Formation via in Situ Electrochemically Charging in Aqueous Zinc-Ion Battery | ACS Nano

Inorganics | Free Full-Text | Remedies to Avoid Failure Mechanisms of  Lithium-Metal Anode in Li-Ion Batteries
Inorganics | Free Full-Text | Remedies to Avoid Failure Mechanisms of Lithium-Metal Anode in Li-Ion Batteries

Twin boundary defect engineering improves lithium-ion diffusion for  fast-charging spinel cathode materials | Nature Communications
Twin boundary defect engineering improves lithium-ion diffusion for fast-charging spinel cathode materials | Nature Communications

MnO2 particles grown on the surface of N-doped hollow porous carbon  nanospheres for aqueous rechargeable zinc ion batteries - ScienceDirect
MnO2 particles grown on the surface of N-doped hollow porous carbon nanospheres for aqueous rechargeable zinc ion batteries - ScienceDirect

Ion migration and defect effect of electrode materials in multivalent-ion  batteries - ScienceDirect
Ion migration and defect effect of electrode materials in multivalent-ion batteries - ScienceDirect

Photo-Rechargeable Li-Ion Batteries: Device Configurations, Mechanisms, and  Materials | ACS Applied Energy Materials
Photo-Rechargeable Li-Ion Batteries: Device Configurations, Mechanisms, and Materials | ACS Applied Energy Materials

Nanomaterials | Free Full-Text | Carbon-Coatings Improve Performance of Li- Ion Battery
Nanomaterials | Free Full-Text | Carbon-Coatings Improve Performance of Li- Ion Battery

Experimental absorption band of manganate(V) in solution (solid line)... |  Download Scientific Diagram
Experimental absorption band of manganate(V) in solution (solid line)... | Download Scientific Diagram

Research Development on K-Ion Batteries | Chemical Reviews
Research Development on K-Ion Batteries | Chemical Reviews

Growth, Microhardness And Photoconducting Studies On The Organometallic  Complex Crystal Of TMTM
Growth, Microhardness And Photoconducting Studies On The Organometallic Complex Crystal Of TMTM

Electrolyte Strategies toward Better Zinc-Ion Batteries | ACS Energy Letters
Electrolyte Strategies toward Better Zinc-Ion Batteries | ACS Energy Letters

High-Pressure Synthesis of Trigonal LiFe2F6: New Iron Fluoride with Li+  Tunnels as a Potential Cathode for Lithium-Ion Batteries | The Journal of  Physical Chemistry C
High-Pressure Synthesis of Trigonal LiFe2F6: New Iron Fluoride with Li+ Tunnels as a Potential Cathode for Lithium-Ion Batteries | The Journal of Physical Chemistry C

Frontiers | Application of Manganese-Based Materials in Aqueous  Rechargeable Zinc-Ion Batteries
Frontiers | Application of Manganese-Based Materials in Aqueous Rechargeable Zinc-Ion Batteries

Potassium Permanganate | Formula, Structure & Uses - Video & Lesson  Transcript | Study.com
Potassium Permanganate | Formula, Structure & Uses - Video & Lesson Transcript | Study.com

Experimental absorption band of manganate(V) in solution (solid line)... |  Download Scientific Diagram
Experimental absorption band of manganate(V) in solution (solid line)... | Download Scientific Diagram

An Electrically Conducting Li-Ion Metal–Organic Framework | Journal of the  American Chemical Society
An Electrically Conducting Li-Ion Metal–Organic Framework | Journal of the American Chemical Society

Recent Advances in Cu-Based Metal–Organic Frameworks and Their Derivatives  for Battery Applications | ACS Applied Energy Materials
Recent Advances in Cu-Based Metal–Organic Frameworks and Their Derivatives for Battery Applications | ACS Applied Energy Materials

Interlayer Engineering of Preintercalated Layered Oxides as Cathode for  Emerging Multivalent Metal-ion Batteries: Zinc and Beyond - ScienceDirect
Interlayer Engineering of Preintercalated Layered Oxides as Cathode for Emerging Multivalent Metal-ion Batteries: Zinc and Beyond - ScienceDirect

Potassium Permanganate | Formula, Structure & Uses - Video & Lesson  Transcript | Study.com
Potassium Permanganate | Formula, Structure & Uses - Video & Lesson Transcript | Study.com

Emergent electric field control of phase transformation in oxide  superlattices | Nature Communications
Emergent electric field control of phase transformation in oxide superlattices | Nature Communications