🤝 RESEARCH PARTNERSHIPS

Collaboration Opportunities

Partner with independent computational materials researcher Kyle Clouthier from Petawawa, Ontario. ReOsSSe₂ FREE dataset for university collaborations. FeTeSe $35K evaluation licenses for commercial development.

📊 ReOsSSe₂ - FREE Dataset
MIT License - Platform Demonstration
688.5 meV Rashba splitting (highest for 2D) • 73 Dirac points
📜 FeTeSe - Evaluation Licenses
$35K - Patent-Pending
Aperiodic topological SC • 5 slots • Price escalates

🔬 PARTNERSHIP VALUE

Aperiodic materials discovery platform using proprietary FIQS methodology (trade secret). Complete DFT+SOC computational data, synthesis protocols, and co-authorship opportunities for experimental validation partners. Universities get publications and novel materials. Industry partners get evaluation exclusivity and first right of refusal for commercial licensing.

Platform Capabilities: First-principles materials design beyond 230 periodic space groups - infinite design space for topological materials

Partnership Opportunities

University collaborations for experimental validation. Industry licensing for commercial development. Synthesis partnerships for high-impact publications.

🎓

University Research Partnerships

HIGH

Co-authorship opportunities for experimental synthesis and validation studies

ReOsSSe₂ FREE dataset (MIT License) - complete DFT+SOC calculations, band structure, Fermi surface
Joint experimental synthesis validation (CVD, MBE, or exfoliation methods)
Co-authored publications - Kyle provides computational data, university provides experimental validation
Full computational results shared - universities get publications and novel materials
📜

Materials Evaluation Licensing

CRITICAL

FeTeSe evaluation licenses for commercial development and research

FeTeSe: Patent-pending aperiodic topological superconductor - $35K evaluation license (5 slots, price escalates)
Complete DFT+SOC dataset, synthesis protocols, computational methods
6-month evaluation exclusivity, first right of refusal for commercial licensing ($5M-$25M range)
Co-authorship on validation studies and follow-up research
🔬

Experimental Synthesis Collaborations

MEDIUM

Partnership opportunities for materials synthesis labs and characterization facilities

Computational predictions + experimental synthesis = high-impact publications
Kyle provides DFT+SOC structural optimization, thermodynamic stability, electronic properties
Synthesis partners provide CVD growth, ARPES characterization, transport measurements
Joint publications in high-impact journals (Nature Communications, Advanced Materials, etc.)
💼

Industry Licensing Inquiries

MEDIUM

Commercial applications and licensing discussions for quantum computing, spintronics, transistors

FeTeSe topological superconductor applications: topological qubits, Majorana fermions
ReOsSSe₂ Rashba spintronics: ultra-low-power spin-based transistors, spin-orbit torque devices
Exclusive and non-exclusive licensing options available
Custom commercial licensing terms for specific applications

Licensing & Partnership Pathways

Clear pathways from evaluation to commercial licensing. University partnerships for experimental validation and co-authorship.

$35K

FeTeSe Evaluation License

Patent-pending aperiodic topological superconductor

Complete DFT+SOC dataset + synthesis protocols
6-month evaluation exclusivity
Co-authorship on validation studies
First right of refusal for commercial licensing
5 slots available, price escalates ($35K → $50K → $75K)

Commercial Licensing: $5M-$25M + revenue sharing

FREE

ReOsSSe₂ Research Dataset

MIT License platform demonstration for research partnerships

688.5 meV Rashba splitting (highest for 2D materials)
73 Dirac points - Type-II Dirac semimetal
Complete DFT+SOC calculations, band structure, Fermi surface
First Re-Os heterometallic 2D material - zero prior literature
University partnerships: co-authorship for experimental validation

Open for synthesis collaborations and characterization studies

📧 Start Your Partnership

Contact Kyle Clouthier directly to discuss licensing opportunities, university collaborations, or synthesis partnerships. Detailed technical data packages available under NDA for serious inquiries.

Contact for Licensing & Partnerships

Ready to Partner?

Contact Kyle directly to discuss FeTeSe evaluation licensing, ReOsSSe₂ university collaborations, or synthesis partnerships. Professional materials licensing and research co-authorship opportunities available.

📧 Contact Information

Email: Use contact form at /contact
Location: Petawawa, Ontario, Canada
Response Time: 24-48 hours for legitimate inquiries

🎯 Partnership Types

• FeTeSe evaluation licensing ($35K)
• ReOsSSe₂ FREE dataset collaborations
• University experimental synthesis partnerships
• Industry commercial licensing discussions
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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.