BaY2CuO5

BaY2CuO5 has a DFT band gap of 1.26–1.63 eV across 3 reported structures in 0 space groups; its reference structure is orthorhombic (Pnma (No. 62)). Cross-validated across 1 computational databases.

At a glance

Key Properties

Cross-validated computational properties for BaY2CuO5, aggregated across 1 database.

Band Gap

1.26–1.63 eV
Range across DFT structures · ground state: narrow gap

Energy Above Hull

0.004 eV/atom
Best (lowest) across sources

Stability

Near Hull
2 DFT sources

Structures

3
1 database, 0 space groups
Validation

Cross-Source DFT Agreement

How well independent DFT databases agree on the thermodynamics of BaY2CuO5. Tight agreement means computed properties can be trusted without re-running calculations.

Agreement Score

0.88 / 1.00
Trust tier: medium

Hull Spread

0.030 eV
EAH spread across sources

Sources Compared

2
materials_project, oqmd

Space Group Consensus

—
Crystallography

Reported Structures

Lowest-energy structures reported for BaY2CuO5, ranked by energy above hull.

Space GroupCrystal SystemBand Gap (eV)E above hull (eV/atom)E/atom (eV)Density (g/cm³)
——1.260.0041-2.938—
——1.630.0257-2.916—
Pnma (No. 62)orthorhombic0.000.0344-7.9125.99
——0.000.0490-2.893—
Pnma (No. 62)orthorhombic———6.19
Pnma (No. 62)orthorhombic———6.20
Pnma (No. 62)orthorhombic———6.20
Pnma (No. 62)orthorhombic———6.20
Pnma (No. 62)orthorhombic———6.20
Pnma (No. 62)orthorhombic———6.20
Synthesis

Synthesis Routes

Literature-extracted synthesis procedures targeting BaY2CuO5.

Sol Gel
Procedure available · ceder_sol_gel
Solid State
Procedure available · ceder_solid_state
Solid State
Procedure available · ceder_solid_state
Solid State
Procedure available · ceder_solid_state
Solid State
Procedure available · ceder_solid_state
Solid State
Procedure available · ceder_solid_state
Reference

Frequently Asked Questions

Common questions about BaY2CuO5, answered from cross-validated data.

What is the band gap of BaY2CuO5?

BaY2CuO5 has a DFT-computed band gap of 1.26–1.63 eV across 3 reported structures. Standard DFT underestimates band gaps, so the measured gap is typically larger.

More questions
Is BaY2CuO5 a metal, semiconductor, or insulator?
DFT predicts a band gap of up to 1.63 eV (a semiconductor). Measured gaps are typically larger.
Is BaY2CuO5 thermodynamically stable?
BaY2CuO5 has a lowest energy above hull of 0.004 eV/atom (near hull).
What is the crystal structure of BaY2CuO5?
The reference structure of BaY2CuO5 is orthorhombic symmetry, space group Pnma (No. 62).
What is the density of BaY2CuO5?
The computed density of the ground-state structure of BaY2CuO5 is 5.99 g/cm³.
How many polymorphs of BaY2CuO5 are known?
3 structures of BaY2CuO5 are reported across 1 database, spanning 0 distinct space groups.
How is BaY2CuO5 synthesized?
Literature-reported routes for BaY2CuO5 include sol gel, solid state (10 procedures documented).
What elements does BaY2CuO5 contain?
BaY2CuO5 contains Ba, Cu, O, and Y (4 elements).
Where does the data for BaY2CuO5 come from?
BaY2CuO5 data is cross-referenced from oqmd, materials_project, cod.
Explore

Related Compounds

Other Cuprate Superconductors in the database.

Data sources & attribution
  • oqmd — Data from the OQMD (oqmd.org). Cite: Saal et al., JOM 65, 1501 (2013); Kirklin et al., npj Comp. Mater. 1, 15010 (2015). (CC-BY-4.0)
  • 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 BaY2CuO5 in the Lattice Graph platform

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

Explore the Platform →