Materials Licensing

Patent-pending aperiodic materials available for evaluation licensing. Proven DFT+SOC validation. Platform demonstrated with FREE ReOsSSe₂ dataset.

FeTeSe Evaluation Licenses: $35K • 5 Slots Available • Price Escalates

FeTeSe - Patent-Pending Topological Superconductor

$35K
Evaluation License

Material Properties

  • First computationally-designed aperiodic topological superconductor
  • Validated through DFT relaxation (October 2025)
  • Aperiodic structure beyond 230 periodic space groups
  • Zero prior literature - novel composition discovered via FIQS methodology
  • Patent filing November 2025

Evaluation License Includes

  • Complete DFT+SOC computational dataset
  • Synthesis protocols and growth parameters
  • 6-month commercial exclusivity window
  • Co-authorship on validation publications
  • First right of refusal for commercial licensing ($5M-$25M range)

Applications

Topological Quantum Computing
Majorana qubits, fault-tolerant gates
Superconducting Electronics
Josephson junctions, SQUIDs
Novel SC Research
Aperiodic structure effects on Tc
💎

Evaluation License

$35K - $75K
Price escalates with each sale (5 slots total)
  • Complete computational dataset (DFT+SOC, relaxation, band structure)
  • Synthesis protocols with growth parameters
  • 6-month commercial exclusivity period
  • Co-authorship on validation publications
  • First right of refusal for commercial licensing

Licensing Pathway:

Evaluation ($35K) → Commercial ($5M-$25M) → Revenue sharing

🎓

Research Partnership

FREE
For university synthesis groups
  • FREE access to ReOsSSe₂ computational data (MIT License)
  • Co-authorship on experimental validation publications
  • We retain IP rights, you get publication + data
  • Joint follow-up studies on synthesized materials
  • Platform methodology protected (trade secret)

Target Groups:

CVD synthesis, MBE growth, topological materials characterization

ReOsSSe₂ - FREE Platform Demonstration

FREE
MIT License

Material Properties

  • First Re-Os heterometallic 2D material
  • 688.5 meV Rashba splitting (highest reported for 2D materials)
  • 73 Dirac points (36× more than graphene)
  • Type-II Dirac semimetal with exceptional stability (ΔE = -3.58 eV)
  • Platform validation material - proves FIQS methodology effectiveness

FREE Dataset Includes

  • Complete DFT+SOC computational results
  • Band structure, Fermi surface, Wannier analysis
  • Thermodynamic stability calculations
  • Synthesis guidance (CVD 600-900°C)
  • Open-source under MIT License for research/education

Why License From QuantumDiscovery?

🔬

DFT+SOC Validated

All materials validated through rigorous first-principles calculations using Quantum ESPRESSO. Platform proven with ReOsSSe₂ discovery.

♾️

Infinite Design Space

Proprietary FIQS methodology accesses aperiodic materials beyond 230 periodic space groups - zero prior literature.

🔒

Trade Secret Protection

Platform methodology protected as trade secret. No publications disclosing discovery techniques. Full IP ownership.

Ready to License?

FeTeSe evaluation licenses available now ($35K, 5 slots). ReOsSSe₂ FREE for university synthesis partnerships. Additional discoveries in progress.

Contact About Licensing →
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QuantumDiscovery

Aperiodic Materials Discovery Platform

Systematic discovery of novel aperiodic materials beyond 230 periodic space groups. AI-assisted target identification + custom .CIF engineering + DFT+SOC validation. Trade secret methodology enables access to infinite design space for quantum materials, topological systems, and advanced electronics.

Infinite Space
Beyond 230 Space Groups
DFT+SOC
Validated Methodology
Patent-Pending
FeTeSe Topological SC
FREE Dataset
ReOsSSe₂ Demo Material

© 2025 QuantumDiscovery - Kyle Clouthier

Aperiodic materials discovery platform • Petawawa, Ontario, Canada

Platform validated with ReOsSSe₂ discovery (highest Rashba for 2D materials)

Professional Inquiries: Contact Page

Licensing • Partnerships • Press • Technical Collaboration

FeTeSe: Patent-pending aperiodic topological superconductor (filing Nov 2025). First computationally-designed aperiodic topological SC validated through DFT relaxation. Evaluation licenses: $35K (complete DFT dataset, synthesis protocols, 6-month exclusivity).

ReOsSSe₂: FREE demonstration dataset. 688.5 meV Rashba splitting (highest reported for 2D materials), 73 Dirac points (36× more than graphene), first Re-Os heterometallic 2D material. Platform validation + proof of DFT+SOC capabilities.