Hexagonal copper sulfide (CuS) nanoplates provide optimized electrical conductivity, superior catalytic activity, and enhanced optical properties. Designed for energy storage and semiconductor applications, they ensure efficient charge transport, extended durability, and high adaptability.
Product Overview
Hexagonal Copper Sulfide (CuS) nanoplates are a unique nanomaterial with a two-dimensional hexagonal structure. This shape offers outstanding properties for a variety of applications in nanoadsorption, biomedicine, and solar cells. With high purity and a distinctive morphology, these nanoplates exhibit exceptional performance in catalysis, adsorption, and optoelectronic applications.
Key Features
- High Purity: The hexagonal CuS nanoplates have a purity greater than 99%, ensuring their efficiency and stability in various applications.
- Unique Shape: The hexagonal structure enhances the material's properties, making it particularly advantageous in photocatalysis, adsorption, and optoelectronic applications.
- Excellent Adsorption Properties: Due to their large specific surface area, the nanoplates are highly effective in nanoadsorption applications, improving material efficiency.
- Photovoltaic Potential: These nanoplates are ideal for use in solar cells and other optoelectronic devices, enhancing energy conversion efficiency.
Applications
- Nanoadsorption: The hexagonal CuS nanoplates, with their large surface area, are widely used in gas and liquid adsorption processes.
- Biomedicine: In the biomedical field, these nanoplates serve as carrier materials for drug delivery and therapeutic applications.
- Solar Cells: As a photonic material, CuS nanoplates can be used in solar cells to enhance light-to-energy conversion efficiency.
Parameter | Description |
Purity | >99 wt% (EDS) |
Lateral size | 100-300 nm (SEM) |