Ba4Er3F17

Ba4Er3F17 has a DFT band gap of 6.49 eV across 2 reported structures in 2 space groups; its reference structure is trigonal (R-3 (No. 148)). Cross-validated across 2 computational databases.

BaErF
At a glance

Key Properties

Cross-validated computational properties for Ba4Er3F17, aggregated across 2 databases.

Band Gap

6.49 eV
Range across DFT structures · ground state: insulator

Energy Above Hull

0.000 eV/atom
Best (lowest) across sources

Stability

Stable
1 DFT source

Structures

2
2 databases, 2 space groups
Validation

Cross-Source DFT Agreement

How well independent DFT databases agree on the thermodynamics of Ba4Er3F17. Tight agreement means computed properties can be trusted without re-running calculations.

Only 1 independent DFT source (materials_project) reports a hull energy for Ba4Er3F17, so cross-source agreement can't be assessed yet.

Crystallography

Reported Structures

Lowest-energy structures reported for Ba4Er3F17, ranked by energy above hull.

Space GroupCrystal SystemBand Gap (eV)E above hull (eV/atom)E/atom (eV)Density (g/cm³)
P1 (No. 1)triclinic6.490.0003-6.5856.21
R-3 (No. 148)trigonal———6.35
Synthesis

Synthesis Routes

Literature-extracted synthesis procedures targeting Ba4Er3F17.

Solid State
Procedure available · ceder_solid_state
Solid State
Procedure available · ceder_solid_state
Reference

Frequently Asked Questions

Common questions about Ba4Er3F17, answered from cross-validated data.

What is the band gap of Ba4Er3F17?

Ba4Er3F17 has a DFT-computed band gap of 6.49 eV across 2 reported structures. Standard DFT underestimates band gaps, so the measured gap is typically larger.

More questions
Is Ba4Er3F17 a metal, semiconductor, or insulator?
DFT predicts a wide band gap of up to 6.49 eV (an insulator or wide-band-gap material).
Is Ba4Er3F17 thermodynamically stable?
Yes — Ba4Er3F17 sits on the convex hull (energy above hull 0 eV/atom), i.e. stable.
What is the crystal structure of Ba4Er3F17?
The reference structure of Ba4Er3F17 is trigonal symmetry, space group R-3 (No. 148).
What is the density of Ba4Er3F17?
The computed density of the ground-state structure of Ba4Er3F17 is 6.35 g/cm³.
How many polymorphs of Ba4Er3F17 are known?
2 structures of Ba4Er3F17 are reported across 2 databases, spanning 2 distinct space groups.
How is Ba4Er3F17 synthesized?
Literature-reported routes for Ba4Er3F17 include solid state (2 procedures documented).
What elements does Ba4Er3F17 contain?
Ba4Er3F17 contains Ba, Er, and F (3 elements).
Where does the data for Ba4Er3F17 come from?
Ba4Er3F17 data is cross-referenced from materials_project, cod.
Data sources & attribution
  • materials_project — Data from the Materials Project (materialsproject.org). Cite: Jain et al., APL Materials 1, 011002 (2013). (CC-BY-4.0)
  • cod — Data from the Crystallography Open Database (crystallography.net/cod/). Cite: Grazulis et al., J. Appl. Cryst. 42, 726 (2009). (CC0-1.0)

Analyze Ba4Er3F17 in the Lattice Graph platform

Polymorph comparison, confidence scoring, supply-chain risk, and patent monitoring — across 85 source databases.

Explore the Platform →