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Stoicheia

Mattiq develops modular electrochemical systems that utilize renewable inputs to produce clean chemicals, addressing the fossil fuel dependency of the trillion-dollar chemicals sector. By creating iridium oxide alternatives, the company enhances supply chains for clean hydrogen production and enables the decarbonization of a wide range of chemicals and fuels at industrial scale.

Skokie, United StatesFounded 2021193K+ followers
Updated 20 months ago

Funding

$1.1M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

UD
Funding rounds are not available yet.

Founders

Product

Problem

The trillion-dollar chemicals sector relies heavily on fossil fuels, contributing significantly to global carbon emissions. Producing clean chemicals from renewable sources faces challenges in terms of cost and scalability.

Solution

Mattiq develops modular electrochemical systems that utilize renewable inputs to produce clean chemicals, reducing the chemical industry's dependence on fossil fuels. The company's technology aims to eliminate the "green premium" associated with clean chemicals and fuels by reinventing electrochemical systems development and deployment. Mattiq's approach involves mimicking and miniaturizing real-world systems, parallelizing experimentation, and leveraging data and AI to optimize electrochemical process development. This enables the economically competitive and safe decarbonization of chemicals at industrial scale.

Target Audience

Mattiq's primary customers are companies in the chemicals, plastics, and fuels industries seeking to decarbonize their operations and adopt sustainable practices.

Features

  • Modular electrochemical systems for producing clean chemicals from renewable inputs
  • Iridium oxide alternatives to enhance supply chains for clean hydrogen production
  • Mimicking and miniaturizing real-world systems to ensure performance translates from lab to field
  • Massively parallel, closed-loop development to rapidly iterate on systems design
  • Data collection at every step to unlock AI for electrochemical process development
This profile is AI-generated and may contain inaccuracies.