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Getting Started
From first input to first decision — everything you need to start using FluxMateria.
DOCS
From first input to first decision — everything you need to start using FluxMateria.
The fastest path from "I have molecules" to "I have results."
Choose ADMET, Materials, or another module from the platform dashboard.
Paste a SMILES string, upload an SDF file, or drop a CSV batch.
Check predictions with confidence indicators. Export a decision packet.
The most common input format. Paste directly or include in batch files.
Standard SMILES notation. Canonical or isomeric SMILES accepted. Stereochemistry preserved when specified.
Upload structure files directly. Multi-molecule SDF files supported for batch processing.
Screen entire libraries in one upload. One molecule per row.
Required column: smiles. Optional: name, id, or any metadata columns (passed through to output).
For the Materials module. Enter chemical formulas or element-stoichiometry pairs.
Standard chemical formulas. 73 elements supported (H through Bi, excluding lanthanides).
Every FluxMateria run produces exportable results. Choose the format that fits your downstream workflow.
Tabular results with one row per molecule/material. Includes all predicted properties, confidence levels, and pass/fail flags. Opens directly in Excel, Spotfire, or any data tool.
Structured output for programmatic integration. Includes nested property objects, confidence metadata, and methodology identifiers. Ideal for pipeline automation.
Original structures with FluxMateria predictions stored as SD data fields. Compatible with chemical drawing and visualization tools.
Formatted reports with comparison tables, confidence summaries, and full methodology provenance. Designed for stakeholder review and archival.
Upload a CSV of 1,000+ SMILES. Run the full ADMET panel. Filter by hERG risk, solubility, and CYP inhibition. Export shortlisted candidates with confidence flags for the project team.
Learn more about Life Sciences workflows →Use Inverse Search to define constraints (band gap 1.1–1.5 eV, thermal conductivity > 10 W/mK). Review ranked candidates. Export the Pareto-front shortlist for DFT follow-up.
Learn more about Materials Science workflows →Enter substrate, nucleophile, leaving group, and solvent. Get SN1/SN2/E1/E2 classification with activation barriers. Compare competing pathways to plan your synthesis route.
Learn more about Chemistry workflows →Run the interactive demo or request pilot access to test with your own data.