In the field of new energy, the stability of a material’s microstructure directly determines the efficiency and safety of energy conversion and storage.
For the development of next-generation high-performance batteries and fuel cells, precise characterization of a material’s through-pore size, pore density, tortuosity, porosity, and gas and liquid permeability is an essential part of research and development.
Key Application Areas
Energy Storage and Batteries
Lithium-ion battery separators and supercapacitor electrode materials.
Green Energy and Hydrogen Energy
Fuel cell gas diffusion layers (GDLs), as well as filtration and separation applications related to hydrogen production by water electrolysis, including high-performance gas separation membranes.
Precisely measures the maximum pore size (Bubble Point, BP) and mean pore size (Mean Flow Pore, MFP) of battery separators.
Application Value:
Ensures that lithium ions can pass through the separator smoothly and uniformly while effectively preventing contact between the positive and negative electrodes, fundamentally preventing battery short circuits and safeguarding battery safety.