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Nano Titanium Sol

Updated: 2026-07-15

Overview

Nano titanium sol is a colloidal suspension of titanium dioxide (TiO₂) nanoparticles, typically ranging from 5 to 50 nm in size. It is prized for its unique combination of photocatalytic properties, UV resistance, and stability in liquid form. The sol is commonly used in industrial and commercial applications due to its ability to enhance material performance at the nanoscale. Unlike bulk titanium dioxide, the nano-sized particles in the sol exhibit increased surface area and reactivity, making them ideal for advanced applications such as self-cleaning coatings and environmental remediation. The sol can be synthesized via sol-gel processes or peptization methods, ensuring uniform dispersion of nanoparticles.

Physical and Chemical Properties

瑞江 纳米级二氧化钛水溶液 屏蔽紫外线 光催化剂载体用 钛溶胶清河县瑞江金属材料有限公司

Nano titanium sol is characterized by its high transparency and stability in liquid form. The TiO₂ nanoparticles are typically spherical or rod-shaped, with a crystalline structure (anatase or rutile) that determines their photocatalytic efficiency. The sol's pH ranges from 2 to 10, depending on the synthesis method and stabilizing agents. Key chemical properties include strong oxidation-reduction capabilities under UV light, enabling degradation of organic pollutants. The sol also exhibits excellent adhesion to substrates like glass, metal, and polymers, making it versatile for coatings. Its stability is influenced by factors such as pH, temperature, and the presence of dispersants.

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Main Applications

In the coatings industry, nano titanium sol is used to create self-cleaning and anti-fogging surfaces, such as windows and mirrors. Its photocatalytic properties break down organic dirt and bacteria under sunlight, reducing maintenance costs. The sol is also added to paints and varnishes for UV protection and durability. In cosmetics, it serves as a UV filter in sunscreens and skincare products, offering broad-spectrum protection without whitening effects. Environmental applications include water and air purification systems, where the sol degrades pollutants like VOCs and dyes. Additionally, it is used in antimicrobial textiles and medical coatings.

Safety and Storage

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While nano titanium sol is generally safe when handled properly, precautions are necessary due to its nanoparticle content. Avoid inhalation of aerosols and direct skin contact by using gloves, goggles, and respirators. Spills should be contained and cleaned promptly to prevent environmental release. Storage requires sealed containers to prevent evaporation or contamination. The sol should be kept in a cool, dark place (5-30°C) to maintain stability. Freezing or prolonged exposure to high temperatures can cause particle aggregation or solvent separation, reducing effectiveness.

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B2B Procurement Guide

When procuring nano titanium sol, prioritize suppliers with certifications like ISO 9001 and nanomaterial safety compliance. Key specifications to verify include nanoparticle size (via TEM or DLS reports), TiO₂ concentration (usually 5-30%), and solvent type (water or alcohol-based). Request batch-specific test reports for photocatalytic activity and stability. For large orders, negotiate bulk pricing and evaluate logistics for temperature-controlled transport. Sample testing is recommended to ensure compatibility with your application. Common suppliers include chemical manufacturers in Germany, Japan, and China.

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