Energy Materials
Materials designed for the long-term operation of water electrolysis stacks.
LT Metal PTL materials maximize the hydrogen production efficiency of water electrolysis stacks.
The PTL (Porous Transport Layer) used in PEM water electrolysis stacks is a key component that significantly affects both stack performance and service life. Compared with conventional PTLs, LT Metal’s PTL features lower surface roughness, a uniform open-pore structure, and high strength.
PTL (Porous Transport Layer) Material for PEM Electrolysis Stacks
Leveraging 50 years of expertise in powder manufacturing, sintering, and plating technologies, LT Metal’s PTL achieves low surface roughness, a uniform open-pore structure, and high yield strength, enhancing both the performance and durability of PEM water electrolysis stacks.
- Low surface roughness
- Uniform open-pore structure
- High flexibility and strength
Key Advantages of LT Metal PTL
LT Metal's PTL is optimized for PEM water electrolysis stacks, offering key advantages in performance and reliability.
Low Surface Roughness
Uniform powder distribution and surface structure enable low surface roughness.
Enables stable interfacial contact with the MEA.
- 1 Layer : Roughness ≤3㎛
- 2 Layer : Roughness ≤2㎛
Uniform Open-Pore Structure
An interconnected pore structure facilitates water supply and the release of product gases, optimizing mass transport.
※ Green : Open Pore / Pink : Closed Pore
High Flexibility and High Yield Strength
A uniform sintered structure and mechanical strength ensure the structural stability of the PTL under high-pressure conditions.
LT Metal Next-Generation PTL
Based on MPL and PTE technologies, LT Metal provides high-performance, high-durability next-generation PTL solutions.
MPL(Micro Porous Layer) PTL (Roughness ≤2.0㎛)
IrO2 Coated PTE
Why LT Metal
Three Design Capabilities
Global customers choose LT Metal because our design capabilities in composition, structure, and reliability allow us to deliver the performance and quality they require. This is LT Metal's core competitive strength.
We Design Composition
We design materials and powder properties suited to the PEM electrolysis environment. By precisely controlling particle size and size distribution, we achieve a uniform pore structure and excellent durability, ensuring stable PTL performance.
We Design Structure
We precisely design porosity, pore size, and open-pore structure so that water and product gases can move freely. A uniformly interconnected pore structure supports efficient mass transport in PEM electrolysis cells.
We Design Reliability
Uniform quality and low surface roughness support stable contact with the MEA. Through precise quality control and diverse property evaluations, we deliver PTLs that perform reliably over the long term.