Ordered mesoporous carbon material FDU-15 provides optimized porosity, superior electrochemical performance, and enhanced structural stability. Designed for energy storage and catalytic applications, it ensures efficient ion transport, extended durability, and high adaptability.
Product Overview
FDU-15 is an ordered mesoporous carbon material that features a highly ordered structure, offering a large specific surface area and precise pore size. This material is particularly effective in applications requiring high surface area and well-defined pore structures. The ordered pore channels make FDU-15 an ideal material for catalysis, energy storage, molecular adsorption, and hydrogen storage, with a wide range of applications in these fields.
Key Features
- High Specific Surface Area:FDU-15 offers a specific surface area greater than 600 m²/g, providing abundant active sites for various applications.
- Precise Pore Size Control:The pore size is tightly controlled in the range of 4-6 nm, suitable for fast material transport and efficient adsorption.
- Ordered Pore Structure:The highly ordered pore channels provide stable and uniform pathways for material transport.
Applications
- Catalyst Support:FDU-15's high surface area and uniform pore size distribution make it an excellent support for catalytic active sites, enhancing catalytic efficiency.
- Capacitor Electrodes:In electrochemical applications, FDU-15 is used as an electrode material for capacitors, delivering excellent energy storage performance.
- Nanoreactor:Its ordered structure makes FDU-15 an ideal candidate for use as a nanoreactor support, improving reaction efficiency in various processes.
- Macromolecule Adsorption:The pore structure of FDU-15 is well-suited for adsorbing large molecular substances, making it widely used in molecular separation and purification.
- Energy and Hydrogen Storage:As a storage material, FDU-15 offers high efficiency for energy and hydrogen storage, playing a key role in energy storage and release.
Technical Parameter | Value |
State | Black Powder |
Specific Surface Area (SSA) | ≥600 m²/g |
Pore Size | 4-6 nm |