Iron-doped Nano Titanium Dioxide Powder Description
Iron-doped Nano Titanium Dioxide Powder is an advanced photocatalytic material designed to harness visible light for a wide range of applications. By incorporating iron ions into the TiO₂ lattice, it exhibits enhanced photocatalytic efficiency, improved light absorption, and superior environmental remediation capabilities. With its nano-scale particle size, large surface area, and excellent chemical and thermal stability, this pale yellow to light brown powder is ideal for use in water and air purification, solar energy devices, antibacterial coatings, and self-cleaning surfaces. Its robust performance under visible light makes it a valuable material for green energy and environmental solutions.
Iron-doped Nano Titanium Dioxide Powder Specifications
Model
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ZT05EF
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Appearance
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Light yellow powder
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Purity (%)
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99.9
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Particle Size (nm)
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5
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Specific Surface Area (m²/g)
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100-200
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Crystal Type
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Anatase-phase
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Surface Properties
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iron-doped
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Product Features and Applications
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Good photocatalytic activity
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Iron-doped Nano Titanium Dioxide Powder Applications
- Photocatalysis: Effective in degrading organic pollutants, breaking down dyes, and purifying water and air under visible light.
- Solar Energy: Enhances the efficiency of dye-sensitized solar cells (DSSCs) by improving light absorption.
- Environmental Remediation: Used in air and water purification systems to remove harmful contaminants.
- Energy Storage: Applied in battery electrodes and other energy storage devices due to improved charge transfer properties.
- Antibacterial Coatings: Generates reactive oxygen species under light, offering effective antimicrobial protection.
- Self-Cleaning Surfaces: Utilized in glass, tiles, and paints for self-cleaning properties under light exposure.
Iron-doped Nano Titanium Dioxide Powder Packing
Our Iron-doped Nano Titanium Dioxide Powder is carefully handled during storage and transportation to preserve the quality of our product in its original condition.
20kg/drum
FAQs
Q1: What is the crystalline phase of Iron-doped Nano TiO₂?
It is usually in the anatase phase, which is well-known for its high photocatalytic activity, with possible traces of rutile depending on the synthesis process.
Q2: How does iron doping improve TiO₂?
Iron doping introduces localized energy levels within the TiO₂ bandgap, allowing for better absorption of visible light and reducing electron-hole recombination, which improves photocatalytic efficiency.
Q3: How does Iron-doped TiO₂ perform under visible light?
Iron doping enables TiO₂ to absorb visible light, expanding its photocatalytic applications beyond UV light, which is the primary activation spectrum for undoped TiO₂.