Li4Mn3Cr3O12

Li4Mn3Cr3O12 is a thermodynamically stable, semiconducting layered oxide used in the research and development of advanced battery cathode materials.

Crystal structure of Li4Mn3Cr3O12
Ground-state structure · Materials Project
Overview

About Li4Mn3Cr3O12

Li4Mn3Cr3O12 is a complex, semiconducting member of the layered lithium transition-metal oxide family. Its presence on the thermodynamic convex hull indicates high structural stability, making it a robust candidate for materials science investigations into ionic transport and structural integrity.

This compound is primarily studied for its potential in electrochemical energy storage systems. By leveraging the synergistic properties of manganese and chromium within a layered lattice, it serves as a platform for developing next-generation cathode materials that balance performance with long-term stability.

At a glance

Key Properties

Cross-validated computational properties for Li4Mn3Cr3O12, aggregated across 3 databases.

Band Gap

0.69 eV
Range across DFT structures

Energy Above Hull

0.000 eV/atom
Best (lowest) across sources

Stability

On hull (stable)
2 DFT sources

Structures

9
3 databases, 2 space groups
Uses

Applications

Where Li4Mn3Cr3O12 is used.

Battery cathode researchEnergy storage material developmentSolid-state ionics
Reference

Frequently Asked Questions

Common questions about Li4Mn3Cr3O12, answered from cross-validated data.

What is Li4Mn3Cr3O12?

Li4Mn3Cr3O12 is a thermodynamically stable, semiconducting layered oxide used in the research and development of advanced battery cathode materials.

More questions
What is Li4Mn3Cr3O12 used for?
Li4Mn3Cr3O12 is used in battery cathode research, energy storage material development, and solid-state ionics.
What is the band gap of Li4Mn3Cr3O12?
Li4Mn3Cr3O12 has a DFT-computed band gap of 0.69 eV across 9 reported structures.
Is Li4Mn3Cr3O12 a metal, semiconductor, or insulator?
With a band gap up to 0.69 eV it is a semiconductor.
Is Li4Mn3Cr3O12 thermodynamically stable?
Yes — Li4Mn3Cr3O12 sits on the convex hull (energy above hull 0 eV/atom), i.e. on hull (stable).
How many polymorphs of Li4Mn3Cr3O12 are known?
9 structures of Li4Mn3Cr3O12 are reported across 3 databases, spanning 2 distinct space groups.
What elements does Li4Mn3Cr3O12 contain?
Li4Mn3Cr3O12 contains Cr, Li, Mn, and O (4 elements).
Where does the data for Li4Mn3Cr3O12 come from?
Li4Mn3Cr3O12 data is cross-referenced from latticegraph.
Comparison

How It Compares

Within the layered lithium transition-metal oxides class.

Within the diverse class of layered lithium transition-metal oxides, Li4Mn3Cr3O12 occupies a unique niche compared to more conventional materials like LiCoO2 or LiMn2O4. While those siblings are widely utilized for their established electrochemical profiles, this compound offers a distinct structural arrangement that allows researchers to explore how mixed-metal substitution influences electronic behavior and ion mobility in complex oxide frameworks.

Explore

Related Compounds

Other Layered Lithium Transition-Metal Oxides in the database.

Data sources & attribution
  • latticegraph — Lattice Graph Materials Intelligence Platform

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