Ultrathin transfer AAO membrane provides optimized porosity, superior mechanical stability, and enhanced flexibility. Designed for advanced filtration and nanofabrication applications, it ensures efficient separation, extended durability, and high adaptability.
Product Overview
The ultrathin transfer AAO membrane is a thin film made using anodized aluminum oxide (AAO) technology, offering high uniformity and excellent separation performance. The membrane can be easily transferred to different substrates, making it suitable for applications in nanomaterial synthesis, separation technologies, and high-precision sensors. Customers can provide substrates as needed, and the transfer technology enables its use in a wide range of complex experiments and industrial applications.
Key Features
- Ultrathin Structure:The membrane has an extremely thin thickness, ideal for applications that require very thin films.
- High Uniformity:The membrane's pore size is uniform, significantly improving filtration and separation efficiency.
- Transferability:The membrane can be transferred from its original substrate to other substrates, enhancing its application flexibility.
- Excellent Chemical and Physical Stability:Maintains good stability under various environmental conditions, making it adaptable to different chemical and physical environments.
- High Precision Applications:Suitable for nanomaterial synthesis, separation and filtration, and sample preparation in precision applications.
Applications
- Nanomaterial Synthesis and Preparation:Used in the synthesis of nanowires, nanorods, nanotubes, etc., advancing the research and application of novel nanomaterials.
- Separation Technologies:Enhances efficiency in gas separation, liquid filtration, and other separation processes due to its excellent separation performance.
- High-Precision Sensors:Used in the manufacture of highly sensitive sensor components for gas detection and biosensor applications.
- Electronics and Energy:Provides efficient material support for electronic products and energy storage devices.
- Surface Treatment and Coatings:Can be used as a surface coating or treatment material to enhance the properties of substrates.
Appearance | Membrane | Membrane | Membrane | Membrane | Membrane | Membrane | Membrane | Membrane |
Area | ≥1 cm² | ≥1 cm² | ≥1 cm² | ≥1 cm² | ≥1 cm² | ≥1 cm² | ≥1 cm² | ≥1 cm² |
Pore Size | 400 nm | 30 nm | 30 nm | 50 nm | 50 nm | 70 nm | 70 nm | 300 nm |
Pore Spacing | 450 nm | 65 nm | 65 nm | 100 nm | 100 nm | 100 nm | 100 nm | 450 nm |
Pore Depth | 500 nm | 200 nm | 400 nm | 200 nm | 400 nm | 200 nm | 400 nm | 500 nm |
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