Nanometer Tungsten Oxide (WO₃)
Nanometer Tungsten Oxide (WO₃)
Nanometer Tungsten Oxide (WO₃)
Nanometer Tungsten Oxide (WO₃)
Nanometer Tungsten Oxide (WO₃)
Nanometer Tungsten Oxide (WO₃)

Nanometer Tungsten Oxide (WO₃)

  • element:Tungsten (W), Oxygen (O)
  • purity:~99.9%
  • shape:Yellow powder
  • specification:Particle Size: 30–300 nm
  • packaging:Customizable

Nanometer tungsten oxide (WO₃) provides optimized electrochromic properties, superior photocatalytic activity, and enhanced infrared absorption. Designed for smart windows, gas sensors, and environmental applications, it ensures efficient optical modulation, extended durability, and high adaptability.

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Product Overview

Nanometer Tungsten Oxide (WO₃) is a transition metal oxide material with excellent photoelectric properties, offering wide application potential in optics, electronics, and energy fields. As an indirect bandgap semiconductor, WO₃ exhibits unique optical characteristics, such as photochromic effects, and maintains good stability under extreme conditions like high temperatures and strong acids/bases. Due to its high chemical reactivity and electrical properties, WO₃ is widely used in cutting-edge technologies.

Key Features

  • Unique Optical Properties: Capable of absorbing visible light and exhibiting photochromic behavior in the near-infrared region.
  • Physical and Chemical Stability: Remains stable under harsh environments like high temperatures and strong acidic or basic conditions.
  • Good Electrical Properties: Tunable conductivity, which can be controlled by external conditions (e.g., temperature, atmosphere).
  • High Chemical Reactivity: Large surface atom proportion with abundant active sites, enabling chemical reactions with various substances.
  • Excellent Photoelectric Conversion Efficiency: Shows significant potential in photovoltaic fields, especially for solar cells.
  • Gas Sensitivity: Highly sensitive to low concentrations of specific gases, making it ideal for sensor applications.

Applications

  • Photocatalysis: Used in water splitting for hydrogen production, degrading organic pollutants, and other photocatalytic reactions.
  • Sensors: Widely applied in gas sensors, particularly for detecting harmful gases in the air.
  • Solar Cells: As an n-type semiconductor material, it enhances the photoelectric conversion efficiency of solar cells.
  • Electrochemical Energy Storage: Utilized in supercapacitors and fuel cells due to its excellent conductivity and stability.
  • Smart Windows & Architectural Glass: Utilized for its photochromic properties in smart windows and building glass, offering energy-saving and aesthetic benefits.

 

ParameterDescription
AppearanceYellow powder
Purity~99.9%
Particle size30-300 nm

 

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