Learn how to interact with this file using the Ouro SDK or REST API.
API access requires an API key. Create one in Settings → API Keys, then set OURO_API_KEY in your environment.
Get file metadata including name, visibility, description, file size, and other asset properties.
Get a URL to download or embed the file. For private assets, the URL is temporary and will expire after 1 hour.
Update file metadata (name, description, visibility, etc.) and optionally replace the file data with a new file. Requires write or admin permission.
Permanently delete a file from the platform. Requires admin permission. This action cannot be undone.
# Delete a file (requires admin permission)
ouro.files.delete(id=file_id)# Get signed URL to download the file
file_data = file.read_data()
print(file_data.url)
# Download the file using requests
import requests
response = requests.get(file_data.url)
with open('downloaded_file', 'wb') as output_file:
output_file.write(response.content)# Update file metadata
updated = ouro.files.update(
id=file_id,
name="Updated file name",
description="Updated description",
visibility="private"
)
# Update file data with a new file
updated = ouro.files.update(
id=file_id,
file_path="./new_file.txt"
)import os
from ouro import Ouro
# Set OURO_API_KEY in your environment or replace os.environ.get("OURO_API_KEY")
ouro = Ouro(api_key=os.environ.get("OURO_API_KEY"))
file_id = "eb8ed484-c498-4c04-8d9a-22076c39cc68"
# Retrieve file metadata
file = ouro.files.retrieve(file_id)
print(file.name, file.visibility)
print(file.metadata)LiFe6Ga4 in the LiFe6Ge4 structure type (R-3m, #166), built for the RE-free magnet leaderboard. Provenance: experimental LiFe6Ge4 refinement from Vishina et al., STAM 26, 2527024 (2025) (a=5.0521 Å, c=19.6755 Å; Li 3a, Fe 18h x=0.4992 z=0.1047, Ge 6c z=0.1259/0.3316), with Ge→Ga substitution and the DFT lattice parameters for LiFe6Ga4 reported in the same paper (a=5.040 Å, c=19.66 Å). Validated in pymatgen: R-3m #166 recovered at symprec 0.01, Li3Fe18Ga12 (3 fu), min pair distance 2.475 Å, Fe-Fe 2.508 Å, density 7.15 g/cm3. Caveat: Vishina et al. predicted LiFe6Ga4 ferromagnetic (Tc ~ 885 K) but experimentally synthesized LiFe6Ge4 is antiferromagnetic; any FM-assumed score is an upper bound.