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Titanium Dioxide (TiO2) is an effective photocatalyst. It is available in different forms, such as powder and paste. The types of TiO2 R960 are as follows:
TiO2 R960 Powder
The TiO2 R960 powder is a fine photocatalytic powder with excellent dispersibility and photocatalytic activity. It can generate electron-hole pairs when exposed to UV-Visible light. The photocatalytic powder has several industrial applications.
TiO2 R960 Paste
The TiO2 R960 paste is a thick material made of semiconductor particles. It contains a high concentration of titanium dioxide particles in a binding medium. The titanium dioxide particles in the paste have excellent photocatalytic properties. When exposed to light, it can reduce harmful compounds in the air or liquid. TiO2 R960 paste can be used to create coatings on different surfaces. These coatings can take out harmful substances from the air if they are exposed to light.
The TiO2 R960 is a rutile titanium dioxide photocatalyst. It is a photocatalyst because it can speed up specific chemical reactions when exposed to light. It has several important properties that enable its functionality. These include solid stability, high ultraviolet absorption, and low energy consumption.
Rutile Crystal Structure
The rutile titanium dioxide refers to a type of titanium dioxide that has a specific crystal structure known as rutile. The rutile crystal structure provides TiO2 with better stability compared to other crystal structures like anatase.
UV Light Absorption
Titanium Dioxide has a strong ability to absorb ultraviolet (UV) light. This is particularly useful for applications like solar energy conversion or UV light protection. When TiO2 absorbs UV light, it helps to improve its photocatalytic activity. It can create electron-hole pairs that are essential for the photocatalytic reaction to occur.
Solid Stability
TiO2 R960 is solid and stable under normal working conditions. It won't break down or change too much over time. This durability makes it useful for things like cleaning air and water, saving energy in the sun, and keeping materials safe from getting damaged by the sun. Since TiO2 R960 stays strong and doesn't change much, it can work well for a long time in these jobs.
Reduced Energy Usage
TiO2 R960 needs less energy to get its jobs done compared to other kinds of titanium dioxide. This is a good thing because it means people will spend less money on energy and also create less greenhouse gas. This low energy use makes TiO2 R960 better for the earth than other materials. Since TiO2 R960 can work well with less energy, it is good at saving money and protecting the environment. It is not only helpful for the work it does but also more eco-friendly than other options.
Photocatalytic Degradation
When light shines on this photocatalyst, it can break down harmful things like bad smells, dirty air, and even some liquids that are not good for the earth. This ability to get rid of these unwanted things helps keep the environment cleaner and safer.
Applications for TiO2 R960 include photocatalysis, where the titanium dioxide photocatalyst is used to decompose harmful pollutants under UV light; construction, where it is used to create self-cleaning coatings that break down dirt and organic materials; and air purification, where it is used to create filters that eliminate indoor air contaminants. It is also used in cement and concrete production, wound dressings, and biomedical implants.
When purchasing TiO2 R960, buyers must keep several factors in mind to ensure they acquire a product that meets their specific requirements. By considering these factors, buyers can confidently purchase high-quality titanium dioxide that meets their specific needs.
The buyer's end application plays a significant role in determining the required grade and quality of titanium dioxide. Industries such as coatings, plastics, paper, and cosmetics have specific titanium dioxide requirements for various applications. For instance, buyers in the coatings industry may need a high-performance grade with excellent dispersibility and durability. In contrast, those producing plastic products may prioritize whiteness and light stability.
Different industries often have specific standards and regulations for the titanium dioxide they use. To comply with these regulations, buyers must be aware of industry standards and ensure the supplier's product meets the necessary certifications and regulations. For example, buyers in the food industry must use food-grade titanium dioxide that complies with FDA regulations.
Buyers should assess the supplier's reputation and credibility. This is critical when ordering TiO2 R960 in bulk. It has a major impact on product quality and customer support. Research the supplier's history, customer reviews, and ratings to gauge their reliability. It is also a good idea to check if the supplier is a manufacturer or a distributor. Those who directly produce TiO2 are more likely to understand the product well. They are in a better position to answer any questions regarding product specifications.
Premature TiO2 can quickly settle at the bottom of the container and become difficult to use. Buyers must be aware of the shelf life of this product before placing an order. This will help them choose a quantity that fits their needs to avoid using expired product. Buyers should also consider the post-purchase support the supplier offers. In case of any product-related issues, they should be able to get support and assistance from the supplier.
Q: Is Rutile TiO2 photocatalyst good at self-cleaning surfaces?
A: Yes. The presence of Rutile TiO2 in the photocatalyst reacts with UV rays from the sun in the outdoor air to break down dirt and organic compounds on buildings and pavements. This will leave the surfaces clean. The reaction between the two parties will also prevent the build-up of any grime, so the coated surfaces remain clean for a more extended period. If any dirt accumulates, it can be washed away easily with rain or water.
Q: Does TiO2 R960 change the color of paint?
A: No, the TiO2 R960 does not change the color of the paint. In fact, titanium dioxide is an important ingredient in white paint. It is used as a pigment due to its ability to provide whiteness and brightness to the paint. It also provides better opacity and durability to the paint. Using titanium dioxide in paint enhances the paint's overall quality while keeping the original color.
Q: What is the TiO2 R960 Precursor?
A: The precursor is a substance that can be transformed into another substance through a chemical reaction. In this case, the TiO2 R960 precursor is a titanium alkoxide compound, which is titanium isopropoxide. It can be used to make titanium dioxide in the form of nanoparticles. The precursor undergoes a chemical reaction through a sol-gel method that involves hydrolysis and condensation. The result will be titanium dioxide nanoparticles that are uniform in shape and highly pure.
Q: What is the importance of TiO2 R960 particle size?
A: The particle size of TiO2 R960 plays a very important role in determining the properties and applications of the titanium dioxide. For example, smaller-sized particles will have a larger surface area to volume ratio, while the bigger ones do not. The larger surface area will enhance the reactivity, UV light absorption, and other characteristics of the R960 TiO2. The nanoparticles of titanium dioxide can be used in photocatalysis, sunscreen, and pigment.