Br20Eu10
Br20Eu10 is a thermodynamically stable semiconducting compound formed from europium and bromine.

About Br20Eu10
Br20Eu10 is a distinct semiconducting compound composed of europium and bromine. As a thermodynamically stable phase located on the convex hull, it represents a robust configuration within the europium-halide system, offering consistent structural integrity for experimental study.
The material is characterized by its notable structural diversity, supported by multiple reported crystalline arrangements across major databases. Its semiconducting nature makes it a subject of interest for fundamental electronic investigations and potential applications in specialized chemical synthesis.
Key Properties
Cross-validated computational properties for Br20Eu10, aggregated across 3 databases.
Band GapEnergy needed to move an electron from the valence band to the conduction band. Lower or zero values tend to behave more metallic; larger gaps are more insulating or semiconducting.
Energy Above HullThermodynamic distance from the most stable set of competing phases. 0 eV/atom is on the convex hull; small positive values may still be experimentally accessible.
StabilityA plain-language summary of the best reported energy-above-hull result. It reflects whether the lowest-energy structure is on, near, or far from the stability hull.
StructuresCount of reported calculated crystal structures for this formula, including alternate polymorphs, source databases, and observed space groups.
Applications
Where Br20Eu10 is used.
Frequently Asked Questions
Common questions about Br20Eu10, answered from cross-validated data.
What is Br20Eu10?
Br20Eu10 is a thermodynamically stable semiconducting compound formed from europium and bromine.
What is Br20Eu10 used for?
What is the band gap of Br20Eu10?
Is Br20Eu10 a metal, semiconductor, or insulator?
Is Br20Eu10 thermodynamically stable?
How many polymorphs of Br20Eu10 are known?
What elements does Br20Eu10 contain?
Where does the data for Br20Eu10 come from?
How It Compares
As a unique entry in the europium-bromine landscape, this compound serves as a critical reference point for understanding the stability and electronic behavior of rare-earth halides. Without direct structural siblings in this specific grouping, it stands as a primary example of how europium can coordinate with bromine to form stable, semiconducting architectures.
Data sources & attribution
- latticegraph — Lattice Graph Materials Intelligence Platform
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