Founder
About Phynite Lab
A connected workspace for materials research.
We are building Phynite Lab for materials scientists, research labs, and students working with atomistic simulations. Our aim is to keep the path from a crystal structure to a scientific figure in one project.
See how the product worksThe problem we work on
The result is only part of the study.
Materials research moves between structure files, solver inputs, terminal commands, trajectories, and plotting tools. Keeping the original structure, chosen settings, and output behind each figure together takes care at every step.
Phynite connects structure preparation, DFT and molecular dynamics, result inspection, and Figure Lab. Researchers control the physical model and numerical settings, with inputs, logs, and artifacts available for review.
The product
From structure to simulation to figure.
- 01
Structure
CIF · POSCAR · XYZ
Start with your material and its physical model.
- 02
Simulation
Quantum ESPRESSO · LAMMPS
Choose the settings and inspect the executed inputs.
- 03
Evidence
Logs · CSV · SVG · PDF
Review numerical outputs and retain the sources behind a figure.
DFT uses Quantum ESPRESSO; molecular dynamics uses LAMMPS. Both can run on your connected computer. Scientific conclusions require a suitable model, convergence checks, and review of the actual outputs.
Explore plans and compute optionsThe team
Meet the founders.
Early access
Bring your research workflow.
Phynite Lab is in early access. Join the waitlist to tell us what you study and which tools you need. The team reviews requests and contacts selected researchers; submitting a request does not guarantee access.