20nm zinc oxide nanoparticles provide optimized UV absorption, superior photocatalytic activity, and enhanced antimicrobial properties. Designed for advanced industrial and biomedical applications, they ensure efficient integration, extended durability, and high adaptability.
Product Overview
20nm Zinc Oxide is a high-purity, nanometer-sized zinc oxide material known for its excellent chemical stability and physical properties. With its large surface area, it offers high reactivity, making it a versatile additive in a variety of industries. Its superior characteristics make it widely used in electronics, electronics components, ceramics, plastics, textiles, coatings, and cosmetics, with notable performance in photocatalysts, catalysts, and UV protection.
Key Features
- High Purity: ZnO content ≥99.9%, ensuring superior performance across diverse applications.
- Small Particle Size: 20nm particles provide a large surface area, enhancing reactivity and effectiveness.
- Excellent Chemical Stability: Outstanding UV protection, antimicrobial, and conductive properties.
- Multifunctionality: Suitable for applications in coatings, photocatalysts, catalysts, electronics, plastics, textiles, and cosmetics.
Applications
- Ceramics: Used in ceramic glazes and other ceramic materials, enhancing both physical and chemical properties.
- Rubber & Plastics: Improves strength, durability, and UV resistancein rubber and plastic products.
- Textiles & Fibers: Increases UV protectionand durability of fabrics.
- Hygiene Products: Acts as an antibacterialand UV-protective agent in personal hygiene items.
- Coatings & Photocatalysts: Enhances photocatalytic propertiesin coatings, boosting environmental protection functions.
- Cosmetics: Provides sun protectionand UV-blocking capabilities, commonly used in sunscreens, BB creams, and other skin-care products.
- Electronics & Electrical Products: Improves electrical conductivityand thermal conductivity in electronic devices.
Model | ZnO Purity | Particle Size (SEM) | Surface Area |
Z20 | ≥99.9% | 20nm | 70-90 m²/g |