Photocatalytic Nano Titanium Dioxide Anatase 1 Kilo Sack

$159.00$330.00

With a particle size of 3-50 nanometers, Nano Titanium Dioxide Anatase features small particle size, high activity, water dispersion without agglomeration, and long-term strong photocatalytic performance. It has irreplaceable application advantages in fields such as air purification, water treatment, sterilization and disinfection, self-cleaning materials, sunscreen skincare products, inks and coatings, and energy.

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SKU: 6011NA00P1B101KG Category: Tags: ,

Description

With a particle size of 3-50 nanometers, Nano Titanium Dioxide Anatase features small particle size, high activity, water dispersion without agglomeration, and long-term strong photocatalytic performance. It has irreplaceable application advantages in fields such as air purification, water treatment, sterilization and disinfection, self-cleaning materials, sunscreen skincare products, inks and coatings, and energy.

Air Treatment:

Used for sterilization and disinfection, air treatment, efficiently removing formaldehyde, benzene series, TVOCs, ammonia, automobile exhaust, nitrogen oxides, and other pollutants.

Photocatalyst Purifier Industry:

Used in air purifiers, industrial VOCs exhaust treatment, water treatment, for removing formaldehyde, odors, industrial VOCs, sterilization, and disinfection.

REFERENCE: Visible light-active sub-5 nm anatase TiO2 for photocatalytic organic pollutant degradation in water and air, and for bacterial disinfection

Fig. 2. a) FTIR spectra of T-sol, P25 and commercial anatase TiO2. b) TGA curves of T-sol, P25 and commercial anatase TiO2. c) XPS Ti 2p spectrum of T-sol. d) XPS O 1s spectrum of T-sol.
Fig. 2. a) FTIR spectra of T-sol, P25 and commercial anatase TiO2. b) TGA curves of T-sol, P25 and commercial anatase TiO2. c) XPS Ti 2p spectrum of T-sol. d) XPS O 1s spectrum of T-sol.
Fig. 3. a) UV–Vis diffuse reflectance absorption spectra of T-sol, P25, and commercial anatase TiO2. b) Tauc plots of transformed Kubelka–Munk function versus the energy of light. c) Study on the photocatalytic degradation of the organic dye over T-sol under visible light irradiation. d) Photo images showing the dye solutions before and after the T-sol-catalyzed photocatalytic degradation of the NB dye under visible light. e) Recyclability tests of T-sol for total 5 runs of the dye degradation under visible light. f, g) Visible-light-driven photocatalytic sterilization of bacteria SA through qualitative (f) and quantitative (g) analyses.

Fresh-keeping Film Industry:

Inhibits bacterial and mold growth as well as decomposes ethylene and acetylene gases, used for the preservation of fruits and vegetables, nutrient solution cultivation, and enhancing seed germination vitality.

Coating and Ink Industry:

Photocatalyst coatings used for antibacterial, mildew-proofing, and formaldehyde removal.

Self-cleaning Industry:

Used for self-cleaning of photovoltaic panels, buildings, glass, exterior walls, and vehicle surfaces without affecting aesthetics and light transmission, reducing cleaning frequency.

Technical specification table:

Main content Crystal Type Apperance Particle Size BET Surface character Post
treatment
Heavy
Metal
/ / / nm m2/g / / %
NA05 Nano titanium dioxide Anatase White Powder 3~5 150- Hydrophilic N/A N/D
NA10 Nano titanium dioxide Anatase White Powder 5~15 100- Hydrophilic N/A N/D
NA20 Nano titanium dioxide Anatase White Powder 20~40 40±10 Hydrophilic N/A N/D
NA50 Nano titanium dioxide Anatase White Powder ≤50 30-40 Hydrophilic N/A N/D

 

Additional information

Particle Size

3-5nm, 5-15nm, 16-40nm, 40-50nm

Crystal structure

Anatase

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