Flower-like copper oxide (CuO) microspheres provide optimized surface area, superior catalytic efficiency, and enhanced electrochemical performance. Designed for sensors, batteries, and environmental applications, they ensure efficient charge transport, extended durability, and high adaptability.
Product Overview
Flower-like Copper Oxide Microspheres are copper oxide microspheres with a unique flower-like structure. This material demonstrates exceptional performance across a variety of fields, particularly in catalysis, antibacterial applications, sensing, energy storage, and optoelectronics. Due to its excellent surface properties and structural characteristics, flower-like CuO microspheres are an important material in both research and practical applications.
Key Features
- Unique Structure: The flower-like morphology of CuO microspheres contributes to high activity during catalysis and adsorption processes, making them highly effective for these applications.
- High Purity: The product has a purity of over 95 wt%, ensuring outstanding performance and stability in various applications.
- Multi-functional Performance: The structure and composition of the flower-like CuO microspheres provide broad application potential in catalysis, antibacterial, sensing, energy storage, and optoelectronic fields.
Applications
- Catalysis: Flower-like CuO microspheres serve as efficient catalysts, widely used in organic synthesis and environmental remediation.
- Antibacterial: Due to their antimicrobial properties, these microspheres are used in medical and environmental disinfection applications.
- Sensing: As materials for gas sensors, CuO microspheres are effective for detecting harmful gases, enhancing safety and environmental monitoring.
- Energy: In energy storage and conversion, such as lithium-ion batteries and supercapacitors, CuO microspheres exhibit excellent performance.
- Optoelectronics: In optoelectronic applications, the flower-like CuO microspheres enhance performance in devices like solar cells and photodetectors.
Parameter | Description |
Size | 3-8 μm (SEM) |
Appearance | Black powder |
Purity | >95 wt% (EDS) |
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