The Catalyst Layer of Pem Fuel Cell

Fuel cells enable a clean and efficient production of heat and power from a diversity of primary energy sources. Even though,substantial improvements have been made over the past few years in the cell design and material utilization, several technical barriers still exist that prevent the PEM fuel cells from commercialization.Among the various obstacles, the most important are low cell performance due to low catalyst utilization, and high cost due toplatinum (Pt) catalyst used in the catalyst layer (CL). Hence,there has been considerable interest in the design and optimization of catalyst layers aiming at performance improvement and costreduction.

Using catalyst in locations with higher reaction rates results in improvement in fuel cell performance. In the other words, the place of the higher reaction rate is the key answer to the question of where to apply more catalyst. Geometrical patterns of non-uniform catalyst distribution have a significant contribution on the fuel cell performance.

The Catalyst Layer of Pem Fuel Cell - Fuel Cell Catalyst Coating

Cheersonic’s fuel cell catalyst coating systems are uniquely suited for these challenging applications by creating highly uniform, repeatable, and durable coatings. Using the company’s patented ultrasonic spray head technology, it can spray uniformly and efficiently on proton exchange membranes and gas diffusion layers. Uniform catalyst coatings are deposited onto PEM fuel cells, GDLs, electrodes, various electrolyte membranes, and solid oxide fuel cells with suspensions containing carbon black inks, PTFE binder, ceramic slurries, platinum and other precious metals. Other metal alloys, including Platinum, Nickel, Ir, and Ru-based fuel cell catalyst coatings of metal oxide suspensions can be sprayed using ultrasonics for manufacturing PEM fuel cells, polymer electrolyte membrane (PEM) electrolyzer, DMFCs (Direct Methanol Fuel Cells) and SOFCs (Solid Oxide Fuel Cells) to create maximum load and high cell efficiency.

The advantages of ultrasonic spraying include:
1.Highly controllable spray that produces reliable, consistent results.
2.Ultra-low flow rate capabilities, intermittent or continuous.
3.Ultrasonic vibrations continuously break up agglomerated particles and keep them evenly dispersed; maximizing platinum utilization.
4.Corrosion-resistant titanium and stainless steel construction
5.The self-cleaning function of the ultrasonic nozzle prevents clogging.
6.The platform takes up less space.
7.80% reduction in paint consumption
8.The particle diameter is optional which can more flexibly affect the through-hole property of the coating

 

About Cheersonic

Cheersonic is the leading developer and manufacturer of ultrasonic coating systems for applying precise, thin film coatings to protect, strengthen or smooth surfaces on parts and components for the microelectronics/electronics, alternative energy, medical and industrial markets, including specialized glass applications in construction and automotive.

Our coating solutions are environmentally-friendly, efficient and highly reliable, and enable dramatic reductions in overspray, savings in raw material, water and energy usage and provide improved process repeatability, transfer efficiency, high uniformity and reduced emissions.

Chinese Website: Cheersonic Provides Professional Coating Solutions