A luminous fusion-scale energy structure emerging from a dark industrial landscape
Li-6 for fusion · Li-7 for fissionOne industrial platform · No mercury

The Nuclear Fuel Platformfor Advanced Reactors.

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.

Fusion fuelLithium-6
Fission coolantLithium-7
Platform expansionB-10 · Cl-37 · Gd-157

The investable bottleneck

The nuclear renaissancehas a fuel problem.

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.

ConstraintINFINITIX response

Fusion blankets

Enriched Li-6

Fission coolant

High-purity Li-7

Legacy mercury

Mercury-free route

Multiple reactors

One industrial platform
Glowing atomic structures expressing controlled isotope separation
Two strategic isotope streams

Li-6 enables fusion fuel. Li-7 enables advanced-fission coolant.

A scalable separation architecture

One platform.
Multiple isotopes.

A liquid-liquid chemical-exchange platform combines proprietary molecular-cage chemistry with standard industrial extraction equipment.

Mercury-free processStandard LLE equipmentModular cascadeMolecule + process + purification IP

Core process

Separate lithium isotopes

Proprietary molecular cages make industrial liquid-liquid extraction isotope-selective—creating a mercury-free route to enriched Lithium-6 and high-purity Lithium-7.

Stage01 / 04OutputLi-6 + Li-7ArchitectureModular
A precision energy beam selectively illuminating one isotope within a stream of atoms
Selective by design

One molecule.
One isotope.
One IP family.

Defensible chemistry translated into repeatable, modular industrial separation.

Illustrative visual

Strategic isotope portfolio

Lithium is the beachhead.
Isotopes are the platform.

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.

01⁶Li

Lithium-6

Beachhead

The enabling isotope for tritium breeding and self-sufficient deuterium-tritium fusion fuel cycles.

02⁷Li

Lithium-7

Co-product

A high-value co-product for advanced nuclear coolant and molten-salt applications, strengthening plant economics.

03³⁷Cl

Chlorine-37

Platform target

An isotope pathway for chloride coolant and fuel-salt systems in next-generation reactor architectures.

04¹⁰B

Boron-10

Platform target

A strategic neutron-absorption isotope used in reactivity control, shielding and nuclear safety systems.

05¹⁵⁷Gd

Gadolinium-157

Platform target

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.

Strategic nuclear materials moving from raw complexity into ordered purified streams
From scarcity to infrastructure

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

Illustrative visual
A monumental advanced industrial facility representing isotope infrastructure at scale
The reactor-agnostic thesisWhichever market scales first, INFINITIX is positioned to supply it.
Illustrative visual

Designed for disciplined scale

Venture capital validates the first industrial wedge.
Project capital scales production.

01 / REACTOR-AGNOSTIC WEDGE

One constraint. Multiple winners.

INFINITIX can supply across fusion architectures, reducing dependence on any single plasma technology or reactor developer.

02 / CAPITAL-EFFICIENT DE-RISKING

Prove the process before financing the plant.

Venture capital advances chemistry, integration and qualification; asset finance enters when performance and demand are visible.

03 / INFRASTRUCTURE ECONOMICS

From paid validation to long-term supply.

Qualification fees, pilot lots and capacity reservations build toward recurring supply and defensible process-IP economics.

24-month objectiveLi-6 / Li-7 TRL6
Technical proofIntegrated pre-pilot
Commercial proofCustomer qualification programs
Industrial pathwayProject-financed production OPCos

Fusion is the beachhead. Strategic isotope infrastructure is the company.

Hard to replicate quickly

A rare team for a new strategic industry.

Isotopic separation, nuclear fuel cycle, molten salts and industrial project management—built on former NAAREA, ADIONICS, ORANO and CNRS expertise.

Jean-Luc Alexandre01

Jean-Luc Alexandre

Founder & CEO

Industrial execution · advanced reactors · fuel cycle

Guillaume De Souza02

Guillaume De Souza

Chief Isotopic Separation Officer

Separation science · liquid-liquid extraction · 35+ patents

Eric Pernice03

Eric Pernice

US Partnerships & Programs

Fuel logistics · export control · spent fuel management

Sylvie Delpech04

Sylvie Delpech

Molten Salt & Chemistry

Nuclear materials · fuel-cycle innovation · qualification

Private partner & investor briefing

Fuel will define the winners of the next nuclear cycle.

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.

Fusion developersAdvanced fissionDOE & national labsUS deep-tech VC
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