Iron nanowires provide optimized magnetic properties, superior electrical conductivity, and enhanced mechanical strength. Designed for electromagnetic shielding, sensors, and biomedical applications, they ensure efficient performance, extended durability, and high adaptability.
Product Overview
Iron nanowires are one-dimensional nanostructured materials made from iron. With their excellent electrical conductivity, catalytic properties, and good mechanical strength, iron nanowires have broad application potential in areas such as catalysis, sensors, energy storage, and electronic devices. Their dispersibility in aqueous solutions makes them effective components in various liquid systems.
Key Features
- Excellent Electrical Conductivity:Iron nanowires maintain good conductivity, making them ideal for use in electrical and electronic fields.
- High Surface Area:Their large surface area increases the number of active sites for chemical reactions, facilitating catalysis.
- Good Mechanical Properties:Despite their small size, iron nanowires retain high strength and hardness.
- Chemical Reactivity:Compared to bulk iron, iron nanowires have enhanced chemical reactivity, enabling them to participate in various chemical reactions.
- Good Dispersibility:They have excellent solubility and dispersibility in water, making them suitable for use in liquid environments.
Applications
- Catalysis:Iron nanowires can be used as catalysts in organic reactions, environmental treatment, and more.
- Sensors:With their excellent electrical properties, iron nanowires are ideal for creating high-sensitivity gas and biosensors.
- Energy Storage:Used in batteries and supercapacitors to improve energy storage performance.
- Electronic Devices:In microelectronics, iron nanowires serve as conductive materials in integrated circuits and other electronic components.
- Environmental Remediation:Due to their strong chemical reactivity, iron nanowires are effective in removing water and soil pollutants.
Parameter | Value |
Appearance | Colloid |
Solvent | Water |
Diameter | 100 nm |
Length | 20 μm |
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