Product name: Nano Titanium Dioxide/Nano TiO2
Brand: Entrepreneur
Cas No.: 13463-67-7
Purity: 93% min
Grade: ATPN-A01/ATPN-A10/ATPN-R15/ATPN-R50
Boiling point: 2500-3000°C
Country of Origin: China
Appearance: White powder
Delivery Time: Within 3-10 working days according to the quantity
Other names:Nano TiO2 / Titanium dioxide nanoparticle / nanoscale titanium dioxide
 
Description:
	Nano Titanium Dioxide, also known as nano TiO2, titanium dioxide nanoparticle or nanoscale titanium dioxide, is a type of titanium dioxide particle with extremely small size, typically ranging from 1 to 100 nanometers. It is produced by various methods, including the gas-phase oxidation process and the sol-gel method.
Nano Titanium Dioxide has unique and enhanced properties compared to conventional titanium dioxide due to its nanoscale size. It is widely used in various applications across different industries. 
It is essential to handle Nano Titanium Dioxide with care, especially during manufacturing and handling processes, as nanoscale particles can pose potential health and safety risks if not managed properly. Therefore, regulatory guidelines and safety measures should be followed while using this nanomaterial.
Overall, Nano Titanium Dioxide's unique properties and versatility make it a promising nanomaterial with a wide range of applications in industries such as cosmetics, coatings, healthcare, environmental remediation, and energy.
 
Features:
	1. Nanoscale Size: As the name suggests, Nano Titanium Dioxide has an extremely small particle size, typically ranging from 1 to 100 nanometers. This nanoscale size gives it unique properties and enhanced performance compared to conventional titanium dioxide.
2. High Surface Area: Due to its small particle size, Nano Titanium Dioxide possesses a large surface area. This increased surface area provides more active sites for various reactions, such as photocatalysis and catalysis.
3. Photocatalytic Activity: One of the significant features of Nano Titanium Dioxide is its strong photocatalytic activity. When exposed to ultraviolet (UV) light, it can initiate various photochemical reactions, leading to the decomposition of organic pollutants, self-cleaning surfaces, and air purification.
4. UV Absorbance: Nano Titanium Dioxide efficiently absorbs UV light, providing excellent UV protection. This property makes it a common ingredient in sunscreens, sunblocking coatings, and UV-resistant materials.
5. Antibacterial and Antimicrobial Properties: Nano Titanium Dioxide exhibits antibacterial and antimicrobial effects. It can inhibit the growth of bacteria and other microorganisms, making it valuable for medical applications and hygiene products.
6. White Pigment: Nano Titanium Dioxide is a highly effective white pigment due to its high refractive index and opacity. It is widely used in paints, coatings, inks, and plastics to provide whiteness and opacity.
7. Energy Storage Applications: Its photocatalytic and electrochemical properties make it suitable for use in energy storage devices, such as lithium-ion batteries and supercapacitors. 
8. Chemical Stability: Nano Titanium Dioxide is chemically stable, which ensures its longevity and effectiveness in various applications.
9. Environmental Benefits: Its photocatalytic activity can help in the degradation of pollutants, contributing to environmental remediation and sustainability efforts.
10. Versatility: Nano Titanium Dioxide finds applications in a wide range of industries, including cosmetics, automotive, construction, electronics, and more, due to its diverse properties and functionalities.
Application:
	1. Sunscreens and Cosmetics
Nano TiO2 is widely used in sunscreens, lotions, and other cosmetic products due to its excellent UV-blocking properties. It helps protect the skin from harmful UV radiation and prevents sunburn and skin damage.
2. Coatings and Paints
It is used as a white pigment in paints, coatings, and inks to provide whiteness and opacity. Additionally, its photocatalytic properties enable self-cleaning coatings, which can break down organic pollutants and maintain cleaner surfaces.
3. Photocatalysis and Air Purification
Nano TiO2 is used in photocatalytic air purifiers and coatings to decompose harmful air pollutants, such as volatile organic compounds (VOCs), bacteria, and odors.
4. Antimicrobial and Antibacterial Coatings
It is incorporated into coatings and surfaces to impart antimicrobial and antibacterial properties, making it suitable for medical equipment, hospital surfaces, and food packaging.
5. Water Treatment
Nano TiO2 is utilized in water treatment processes for its ability to degrade organic contaminants and disinfect water by eliminating harmful microorganisms.
6. Energy Storage
It is used in energy storage applications, such as lithium-ion batteries and supercapacitors, to enhance their performance and stability.
7. Textiles and Fabrics
Nano TiO2 is incorporated into fabrics to provide UV protection, antimicrobial properties, and odor resistance.
8. Construction Materials
It is added to construction materials like cement, concrete, and tiles to improve their durability, self-cleaning ability, and resistance to environmental pollutants.
9. Photovoltaic Cells
Nano TiO2 is employed in dye-sensitized solar cells (DSSCs) and perovskite solar cells to enhance their efficiency and stability.
10. Food and Beverage Packaging:
Nano TiO2 is used in food and beverage packaging to extend shelf life, prevent bacterial contamination, and protect against light-induced degradation.
11. Environmental Remediation
Its photocatalytic activity is harnessed for environmental cleanup and remediation purposes, such as treating contaminated water and air.
12. Electronics and Optics
Nano TiO2 is used in electronics and optical applications, including thin-film transistors, display technologies, and optical coatings.
Specifications:
	 
	 
						Mineralogical  
					 
						type 
					 
						High purity/ 
					 
						electronic grade 
					 
						Sulfuric acid  
					 
						process 
					
		
			
 
				 
			
					 
				
					Name 
				
 
				
					Grade 
				 
				
					Core indicators and features 
				 
				
					Recommended applications 
				 
			
				 
			
					Anatase 
				 
				
					Anatase nanoscale TiO2 
				 
				
					ATPN-A01 
				 
				
					Particle size 3-5nm, monodispersed, excellent activity 
				 
				
					photocatalytic products, transparent materials  
				 
			
				 
			
					ATPN-A10 
				 
				
					Particle size 10nm, monodispersed, high activity 
				 
				
					Ordinary photocatalytic products and materials with moderate transparency requirements. 
				 
			
				 
			
					ATPN-A30 
				 
				
					Particle size 30nm, monodispersed, good activity 
				 
				
					Used for common materials, such as activated carbon, diatomaceous earth, etc. 
				 
			
				 
			
					ATPN-A50 
				 
				
					Particle size 50nm uniformly dispersed, average activity 
				 
				
					Common materials, such as asphalt. 
				 
			
				 
			
					Rutile 
				 
				
					Rutile nanoscale TiO2 
				
 
				
					ATPN-R15 
				 
				
					Water-soluble, with an average particle size of approximately 15nm, monodispersed, and uniformly sized. 
				 
				
					High-end coatings, cosmetics, pigments, inks, and more. 
				 
			
				 
			
					ATPN-OR15 
				 
				
					Oil-soluble, with an average particle size of approximately 15nm, coated with alumina and stearic acid, with a TiO2 content of 80%. 
				 
				
					Cosmetics, high-end anti-aging products, coatings, inks, and more. 
				 
			
				 
			
					ATPN-R50 
				 
				
					Water-soluble, with an average particle size of approximately 50nm, monodispersed, and uniformly sized. 
				 
				
					High-end coatings, cosmetics, pigments, inks, and more. 
				 
			
				 
			
					 
				
					ATPN-3N01 
				 
				
					Purity of 99.9%, uncoated; BET greater than 20, primary particle size in the nanometer range; prepared by chloride method. 
				 
				
					High-end electronic basic materials for MLCC, DCC, PTC. 
				 
			
				 
			
					ATPN-3N02 
				 
				
					Purity of 99.9%, uncoated; BET greater than 8, particle size in the hundreds of nanometers; prepared by chloride method. 
				 
				
					High-end electronic basic materials for MLCC, DCC, PTC. 
				 
			
				 
			
					ATPN-3N11 
				 
				
					Purity of 99.7%, uncoated; BET greater than 8, mixed crystal phases; prepared by sulfuric acid method. 
				 
				
					Common electronic basic materials for MLCC, DCC, PTC. 
				 
			
				 
			
					ATPN-3N12 
				 
				
					Purity of 99.5%, uncoated; BET greater than 5, mixed crystal phases; prepared by sulfuric acid method. 
				 
				
					Common electronic basic materials for MLCC, DCC, PTC. 
				 
			
				 
			
					 
				
					ATPN-SR01 
				 
				
					Zirconium, aluminum, and organic-coated, high covering power, weather resistance, heat resistance, and glossiness. 
				 
				
					Paints, coatings, inks, etc. 
				 
			
				 
			
					ATPN-SR02 
				 
				
					Zirconium, aluminum, and organic-coated, high weather resistance, covering power, high glossiness, and stability. 
				 
				
					Papermaking, plastics, coatings, and inks, etc. 
				 
			
				 
			
					ATPN-SR9801 
				 
				
					Purity of 98.8%, uncoated, high covering power and low oil absorption. 
				 
				
					Traffic sign paint, color masterbatch, rubber, papermaking, ceramics. 
				 
			
				 
		
	
					Chloride process 
				 
				
					ATPN-CR01 
				 
				
					Chloride process, good hue, gloss, dispersion fineness, and covering power. 
				 
				
					High-end coatings, inks, plastics, etc. 
				 
			
	
Storage: Store in a cool, dry, ventilated place.
	
Package: 50kg/bag or as your special request.
	
 
	