Lithium-6
BeachheadThe enabling isotope for tritium breeding and self-sufficient deuterium-tritium fusion fuel cycles.


Critical isotopes for fusion and fission—from one industrial platform. INFINITIX starts with enriched Lithium-6 and high-purity Lithium-7, then expands across strategic nuclear materials.
Fuel-cycle infrastructure
The investable bottleneck
Fusion reactors must breed tritium from blankets requiring enriched Lithium-6. Advanced fission reactors need nuclear-grade Lithium-7 coolant and other strategic isotopes.
Reactor programs are moving faster than critical-isotope supply. INFINITIX is building the fuel infrastructure layer that can scale with whichever market moves first—and with both as they mature.
Fusion blankets
Enriched Li-6Fission coolant
High-purity Li-7Legacy mercury
Mercury-free routeMultiple reactors
One industrial platform
Li-6 enables fusion fuel. Li-7 enables advanced-fission coolant.
Enrich · Qualify · Reserve · Scale
A scalable separation architecture
A liquid-liquid chemical-exchange platform combines proprietary molecular-cage chemistry with standard industrial extraction equipment.
Core process
Proprietary molecular cages make industrial liquid-liquid extraction isotope-selective—creating a mercury-free route to enriched Lithium-6 and high-purity Lithium-7.

Defensible chemistry translated into repeatable, modular industrial separation.
Beachhead + platform
Strategic isotope portfolio
Li-6 creates the fusion entry point. Li-7 anchors nearer-term fission demand and strengthens co-product economics. The platform then expands into neutron management and advanced molten-salt systems.
The enabling isotope for tritium breeding and self-sufficient deuterium-tritium fusion fuel cycles.
A high-value co-product for advanced nuclear coolant and molten-salt applications, strengthening plant economics.
An isotope pathway for chloride coolant and fuel-salt systems in next-generation reactor architectures.
A strategic neutron-absorption isotope used in reactivity control, shielding and nuclear safety systems.
A high-capture isotope for advanced fuel design and precision neutron-management applications.
Lithium-6 and Lithium-7 are the initial commercial focus. Chlorine-37, Boron-10 and Gadolinium-157 are platform expansion targets—not current production claims.

Advanced reactors move fast.
Critical-isotope supply does not.

The reactor-agnostic thesisWhichever market scales first, INFINITIX is positioned to supply it.Illustrative visual
Deep-tech IP → infrastructure assets
Designed for disciplined scale
INFINITIX can supply across fusion architectures, reducing dependence on any single plasma technology or reactor developer.
Venture capital advances chemistry, integration and qualification; asset finance enters when performance and demand are visible.
Qualification fees, pilot lots and capacity reservations build toward recurring supply and defensible process-IP economics.
Fusion is the beachhead. Strategic isotope infrastructure is the company.
Science · Engineering · Programs
Hard to replicate quickly
Isotopic separation, nuclear fuel cycle, molten salts and industrial project management—built on former NAAREA, ADIONICS, ORANO and CNRS expertise.
01Founder & CEO
Industrial execution · advanced reactors · fuel cycle
02Chief Isotopic Separation Officer
Separation science · liquid-liquid extraction · 35+ patents
03US Partnerships & Programs
Fuel logistics · export control · spent fuel management
04Molten Salt & Chemistry
Nuclear materials · fuel-cycle innovation · qualification
Private partner & investor briefing
We are opening conversations with fusion developers, advanced-fission partners, strategic institutions and US deep-tech investors aligned with the next critical layer of the nuclear value chain.