The world is shifting toward renewable energy, but the biggest challenge remains: how do we store it efficiently, affordably, and at scale considering its variability?

That’s where my research comes in.

I’m a Ph.D. candidate in Chemical Engineering at Concordia University, developing next-generation organic redox flow batteries that can revolutionize grid-scale energy storage. Under the supervision of Professor Marc-Antoni Goulet at the Sustainable Electrochemical Technologies Lab (SET Lab), I focus on:

⚡️- Stabilizing organic redox molecules
⚡️- Designing high-performance electrolytes
⚡️- Integrating machine learning for real-time battery monitoring

My goal? To create durable, scalable, and cost-effective batteries that make clean energy truly sustainable.

I see a future where cutting-edge research transforms into real-world solutions.

That’s why I’m driven to explore entrepreneurship, commercialization, and industrial collaboration—to bring research out of the lab and into the world.

💡 If you’re working on something exciting in research, startups, or industry, let’s connect! 💡

Experience

  • 2023–present
    Ph.D. Candidate, Concordia University

Publications

  • 2025
    4,4′-Hydrazobis(1-methylpyridinium) as a Two-Electron Posolyte Molecule for Aqueous Organic Redox Flow Batteries, Journal of the American Chemical Society
  • 2024
    Stability of Alizarin as a Low-Cost Anthraquinone for Aqueous Redox Flow Batteries, Journal of The Electrochemical Society

Contact Meysam for

  • General
  • Media request
  • Speaking request
  • Consulting / Advising