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Ionomr Innovations Inc.

Ionomr develops Aemion and Pemion, high-performance ion exchange membranes that enhance efficiency in hydrogen generation and CO2 conversion for clean technology applications. These materials address the need for durable, cost-effective solutions in the hydrogen economy and chemical recovery processes, minimizing environmental impact while improving operational performance.

Founded 2017687K+ followers
Updated 20 months ago

Funding

Funding not disclosed

TV
Funding rounds are not available yet.

Founders

Product

Problem

Many clean technology applications, such as hydrogen generation and CO2 conversion, require durable and cost-effective ion exchange membranes. Existing solutions often lack the necessary efficiency and performance, hindering the widespread adoption of these technologies.

Solution

Ionomr Innovations develops Aemion™ and Pemion™, advanced ion exchange membranes and polymers designed to enhance efficiency and minimize costs in clean energy applications. Aemion™ is a high-performance Anion Exchange Membrane (AEM) that enables high-temperature alkaline electrochemistry, increasing efficiency and decreasing capital costs. Pemion™ is a hydrocarbon Proton Exchange Membrane (PEM) that offers higher performance, durability, and lower gas crossover while eliminating fluorine-related environmental concerns. These materials facilitate the global renewable transition by improving hydrogen generation, hydrogen fuel cells, CO2 conversion to synthetic fuels, and onsite chemical recovery.

Target Audience

The primary target audience includes companies involved in hydrogen generation, fuel cell technology, CO2 conversion, and chemical recovery within heavy industries.

Features

  • Aemion™: Anion Exchange Membrane (AEM) for high-temperature alkaline electrochemistry
  • Aemion™ enables increased efficiency and decreased capital costs in hydrogen generation
  • Pemion™: Hydrocarbon Proton Exchange Membrane (PEM) with high performance and durability
  • Pemion™ reduces gas crossover and eliminates fluorine-related environmental concerns
  • Materials suitable for hydrogen fuel cells powering vehicles, ships, and buildings
  • Facilitates conversion of CO2 to synthetic fuels
  • Enables onsite recovery of chemicals for heavy industry, including lithium, mining, and electronics
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