Porous Titanium Dioxide (Mesoporous TiO₂)
Porous Titanium Dioxide (Mesoporous TiO₂)
Porous Titanium Dioxide (Mesoporous TiO₂)
Porous Titanium Dioxide (Mesoporous TiO₂)

Porous Titanium Dioxide (Mesoporous TiO₂)

  • element:Titanium (Ti), Oxygen (O)
  • purity:99%
  • shape:Gray powder
  • specification:Pore Size: ~10 nm
  • packaging:Customizable

Porous titanium dioxide (mesoporous TiO₂) provides optimized surface area, superior photocatalytic efficiency, and enhanced adsorption capacity. Designed for energy conversion, environmental remediation, and biomedical applications, it ensures efficient charge transfer, extended durability, and high adaptability.

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Product Overview

Porous titanium dioxide (TiO₂) is a novel material that incorporates a porous structure, achieved through specific synthetic methods. This porous structure significantly increases the surface area and enhances the surface activity, thereby improving its catalytic and adsorption properties. The material combines the inherent chemical stability, thermal stability, and corrosion resistance of titanium dioxide, and demonstrates broad potential applications in fields such as photocatalysis, gas sensors, and energy storage.

Key Features

  • High Surface Area: The porous structure increases the material's surface area, providing more active sites for catalytic and adsorption reactions.
  • Excellent Physicochemical Properties: Retains the chemical stability, thermal stability, and corrosion resistance of titanium dioxide, ensuring stability in various environments.
  • Photocatalytic Performance: The pore structure facilitates the separation and transport of photogenerated charge carriers, enhancing photocatalytic efficiency. This makes it suitable for applications like water splitting to produce hydrogen and pollutant degradation.
  • Gas Sensitivity: The porous structure enhances adsorption and desorption capabilities of gas molecules, giving it outstanding gas sensing performance.

Applications

  • Photocatalysis: Widely used in water splitting for hydrogen production and the photocatalytic degradation of organic pollutants, addressing environmental and energy issues with its exceptional photocatalytic properties.
  • Gas Sensors: Due to its excellent gas sensitivity, it is ideal for detecting toxic and harmful gases, such as in environmental monitoring and industrial gas leak detection.
  • Energy Storage: Its porous structure is advantageous for charge storage and transfer, showing potential applications in lithium-ion batteries and supercapacitors.
  • Environmental Purification: Used in air purification and water treatment, where its photocatalytic action effectively degrades pollutants and improves environmental quality.

 

ParameterDescription
StateGray powder
Crystal formRutile type
Pore size~10 nm
Surface area~110 m²·g⁻¹
Pore volume~0.34 cm³·g⁻¹
Particle size10 ~ 30 nm
Purity99%

 

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