Resources
The Solutions Center
Reference Design Tutorial
Introducing Ionomr Innovations' AEM Reference Design Kit
AEM design is complex, time consuming, and redesign work is expensive.
The following video gives step by step guidelines on how to activate our revolutionary membrane, assemble your test cell, and get to test insights accurately
Watch the Tutorial video to learn more !
Safety Data Sheets
Aemion +® : AF3N
Aemion +® : SDS
Pemion® : SDS
- Aemion® One step exchange
Properties of Aemion+ Electrolysis Membranes & Ionomer - Aemion®
Properties of Aemion+ Electrolysis Membranes & Ionomer - Aemion® CCM / MEA
Properties of Aemion+ catalyst coated membranes and gas diffusion electrodes - Aemion® CO2
Properties of Aemion+ Electrolysis Membranes & Ionomer - Pemion®
Properties of Pemion Hydrocarbon Proton Exchange Membranes - Pemion® CCMs / MEAs
Properties of Pemion Catalyst Coated Membranes & Membrane Electrode Assemblies
- Aemion® AF3N Membrane Pre-treatment & Activation Procedure
Aemion® AF3N Membrane One step exchange Pre-treatment & Activation App Note - Aemion® Membrane Pre-treatment & Activation, Handling and Storage Recommendations
Aemion® AF3 Membrane Pre-treatment & Handling - Aemion ® AP3 Dissolution for Ink Formulation
Dispersion of Aemion® Ionomers Application Notes - Aemion® Cell & Stack Compression
Aemion® Cell & Stack compression recommendations - Aemion® Disassembly Instructions for Post-Mortem Characterization
Aemion® Disassembly Instructions for Post-Mortem Characterization Application Note - Pemion®: Membrane Handling & Storage
Membrane handling, storage and pre-treatment instructions - Pemion®: Ionomer Dispersion and Ink Formulation
Ionomer handling, mixing & formulation instructions - Aemion® AEM Water Electrolyzer Reference Design
Aemion® Water Electrolyzer Reference Design
- Adv Materials Inter: Transport of Hydrogen Through Anion Exchange Membranes in Water Electrolysis
An in-depth design guide to modeling and optimizing AEM Electrolyzer design with respect to hydrogen transport. - JPS: One year operation of an anion exchange membrane water electrolyzer utilizing Aemion+® membrane: Minimal degradation, low H2 crossover and high efficiency
Demonstration of commercially viable AEMWE with negligible degradation in abrasive, industrially relevant conditions. - JACS: A Stable Hydroxide-Conducting polymer
First report of an indefinitely stable anion-exchange polymer addressed from basic principles - EES: Universal hydroxide-conducting polymer for energy conversion devices
First AEM device paper for HMT-PMBI us as both the polymer electrolyte membrane and ionomer in alkaline AEM fuel cells and electrolyzers - ACS Macro Letters: 10 M KOH at 100°C / Alkaline Stability of Cationic Polyelectrolytes
Next-gen breakthrough paper demonstrating indefinite polymer stability in the most forcing alkaline conditions - Practical Method for Measuring the True Hydroxide Conductivity of Anion Exchange Membranes
The first ex situ method to measure OH– conductivity demonstrating the high conductivity of our materials
- Can Hydrocarbon-Based MEAs Close the Performance Gap to State-of-the-Art Perfluorosulfonic Acid-Based MEAs for PEM Fuel Cells Demonstration of fully hydrocarbon CCMs with performance meeting and exceeding state of the art fully PFSA systems. Introduction of a method for decal transfer of catalyst layer using fully hydrocarbon materials.
- JACS: Structurally-Defined Polyphenylenes
First demonstration of breakthrough of fully hydrocarbon membranes as extremely stable, high performance, and flexible materials - Angewandte: Highly Stable, Low Gas Crossover, Proton-Conducting Phenylated Polyphenylenes
Fuel cell demonstration including DOE stress test of breakthrough of hydrocarbon membranes as highly conductive, low gas crossover proton-exchange membrane fuel cells with extreme radical resistance - Sulfophenylated Terphenylene Copolymer Membranes and Ionomers
This is the first demonstration of a fully hydrocarbon PEMFC exceeding the performance of the gold standard Nafion in all conditions, using a system and optimized for Nafion. - Hydrocarbon-based Pemion® proton exchange membrane fuel cells with state-of-the-art performance
The first demonstration of a fully hydrocarbon Pemion-based PEMFC, which surpassed all previous literature examples of fully hydrocarbon systems, as well as state-of-the-art PFSA systems.
- Hydrogen Production Cost by Aemion+®
The pathway to lower the cost of electrolytic hydrogen is possible with the advance of AEMWE technology. Using the Aemion+ membranes by Ionomr Innovations, AEM stability has improved to a point enabling large scale commercial development, and performance can be improved based on a stable platform to approach PEMWE
Recently we hosted our first ever webinar to inform attendees on the importance of the emerging hydrogen economy and how we are doing our part to drive forward the goals set by the recent Canadian Hydrogen Strategy.
Hosted by Jeff Sim and Benjamin Britton, we are happy to share the recording for all as a high-level educational resource.
- Ionomr at World Hydrogen Technology Convention
Invited to present at the 9th World Hydrogen Technology Convention and in collaboration with f-cell+HFC, we provided a deep dive on our game changing materials for fuel cells and electrolyzers
Presented by Mike Adamski, we are happy to share the recording for all as a high-level educational resource.
Ionomr Q&A
GCxN
Haberlin ROC
