Particle Size 80nm
About
Iron Nanoparticles Nano Fe Powder
:
The submicron iron particles in nanometer size are called iron particles. Due to their large surface areas, they can be highly reactive. When they are exposed to oxygen or water, they oxidize rapidly and form iron ions. They have been widely utilized in medicine and laboratories. Additionally, they are being investigated for their potential use to remediate industrial sites that are contaminated with chlorinated organ compounds.
It is made up of iron atoms that have been superposed at the nanometer level (E-9m). The iron atoms are identical in their physical and chemical properties. For example, nano iron can ignite spontaneously in the air. While ordinary iron is susceptible to corrosion, nano iron resists corrosion. Globally trusted Iron N anoparticles Nano Fe Powder Source . You can send us an inquiry regarding the latest. Prices starting at Iron Nanoparticles Anytime.
Products Performance of Iron Nanoparticles Nano Fe Pulp:
Technical Parameters of Iron Nanoparticles Nano Fe Pulp:
It is simple.
Iron Nanoparticles Nano Fe Powder
Produced?
Nano-iron preparation can be broken down into two parts: chemical and physical.
Evaporation condensation: Also known as vacuum evaporation or laser heating evaporation. This method uses various methods for gasification, plasma formation, or rapid condensation of the medium. These nanometer particles are high in purity and have a good crystalline structure. This technique is useful for controlling particle sizes, although the technical equipment can be quite costly.
Method of chemical reduction: This is where a specific reducing agent is employed. It can either be metal ferric sodium or its oxide reduction nano-iron particles. The method can then be sub-divided into solid-phase and liquid-phase methods.
Applicaciones Iron Nanoparticles Nano Fe Powder :
1. Absorbing material: The special absorbent properties of metal nanoparticles are unique. Stealth materials that have millimeter-wave capabilities can include iron, cobalt, and zinc oxide powders. Carbon-coated metal powders are also available. You can use iron nanoparticles as an infrared and structural stealth, or mobile phone radiation shielding materials.
2. Magnetic medium Nano-iron’s high saturation susceptibility, permeability and magnetic properties make it a magnetic medium. It can even be combined with a fine magnetic head.
3. Material for magnetic recorders with high performance: The advantages of nano-iron include high saturation susceptibility (high specific saturation susceptibility), high correction coercoerity and good oxidation resistance. These characteristics can be used to greatly enhance the performance of magnet tape as well large hard and soft disks.
4. The fluid is: Magnetic fluid can be made from iron, cobalt or nickel. It has excellent performances and is widely used for sealing damping, sound control, light displays, and other applications.
Storage condition of Iron Nanoparticles Nano-Fe Powder
Iron nanoparticles will suffer from damp reunion. This can affect their dispersion performance as well as the use effects. Iron powder should therefore be stored in vacuum packaging and in a cool dry place. Additionally, Fe Nanoparticles should be avoided when under stress.
Shipping and Packing of Iron Nanoparticles Nanofe Powder
There are many options for packing depending on how large the iron powder.
Iron nanoparticles packing: You can vacuum pack 1kg/bag, 25kg/barrel or according to your requirements.
Shipment of iron nanoparticles If payment is received, items may be shipped by air, sea or express.
The submicron iron particles in nanometer size are called iron particles. Due to their large surface areas, they can be highly reactive. When they are exposed to oxygen or water, they oxidize rapidly and form iron ions. They have been widely utilized in medicine and laboratories. Additionally, they are being investigated for their potential use to remediate industrial sites that are contaminated with chlorinated organ compounds.
It is made up of iron atoms that have been superposed at the nanometer level (E-9m). The iron atoms are identical in their physical and chemical properties. For example, nano iron can ignite spontaneously in the air. While ordinary iron is susceptible to corrosion, nano iron resists corrosion. Globally trusted Iron N anoparticles Nano Fe Powder Source . You can send us an inquiry regarding the latest. Prices starting at Iron Nanoparticles Anytime.
Products Performance of Iron Nanoparticles Nano Fe Pulp:
Iron nanoparticles possess a high specific surface, strong tunneling and small boundary effects, as well as the properties that are common to ordinary iron. They have uniform size particles, small particle distributions, low carbon, nitrogen, sulfur and other harmful elements. This material is also very fluid, has a high oxidation resistance and a low sintering temp.
Technical Parameters of Iron Nanoparticles Nano Fe Pulp:
Name of the product | MF | Purity | Particle Size | The Shape | SSA | The color of the sky |
Iron Nanopartiles | Fe | 99% | 80nm | Spherical | 8-14m2/g | Black |
Nano-iron preparation can be broken down into two parts: chemical and physical.
Evaporation condensation: Also known as vacuum evaporation or laser heating evaporation. This method uses various methods for gasification, plasma formation, or rapid condensation of the medium. These nanometer particles are high in purity and have a good crystalline structure. This technique is useful for controlling particle sizes, although the technical equipment can be quite costly.
Method of chemical reduction: This is where a specific reducing agent is employed. It can either be metal ferric sodium or its oxide reduction nano-iron particles. The method can then be sub-divided into solid-phase and liquid-phase methods.
Applicaciones Iron Nanoparticles Nano Fe Powder :
1. Absorbing material: The special absorbent properties of metal nanoparticles are unique. Stealth materials that have millimeter-wave capabilities can include iron, cobalt, and zinc oxide powders. Carbon-coated metal powders are also available. You can use iron nanoparticles as an infrared and structural stealth, or mobile phone radiation shielding materials.
2. Magnetic medium Nano-iron’s high saturation susceptibility, permeability and magnetic properties make it a magnetic medium. It can even be combined with a fine magnetic head.
3. Material for magnetic recorders with high performance: The advantages of nano-iron include high saturation susceptibility (high specific saturation susceptibility), high correction coercoerity and good oxidation resistance. These characteristics can be used to greatly enhance the performance of magnet tape as well large hard and soft disks.
4. The fluid is: Magnetic fluid can be made from iron, cobalt or nickel. It has excellent performances and is widely used for sealing damping, sound control, light displays, and other applications.
Storage condition of Iron Nanoparticles Nano-Fe Powder
Iron nanoparticles will suffer from damp reunion. This can affect their dispersion performance as well as the use effects. Iron powder should therefore be stored in vacuum packaging and in a cool dry place. Additionally, Fe Nanoparticles should be avoided when under stress.
Shipping and Packing of Iron Nanoparticles Nanofe Powder
There are many options for packing depending on how large the iron powder.
Iron nanoparticles packing: You can vacuum pack 1kg/bag, 25kg/barrel or according to your requirements.
Shipment of iron nanoparticles If payment is received, items may be shipped by air, sea or express.
Iron Nanoparticles Properties |
|
Other Titles |
Iron nanopowder, iron nano-particles,
Fe nano-powder, nanoiron, nano-Fe |
7439-89-6 | |
Compound Formula | Co |
Molecular Weight | 55.85 |
Appearance | Black Powder |
Melting Point | 1535 |
Boiling Point | 2750 |
Poisson’s Rate | 0.29 |
Solubility of H2O | N/A |
Thermal Expansion | (25 degC) 11.8 um*m-1*K-1 |
Iron Nanoparticles Safety & Health Information |
|
Signal word | Danger |
Hazard Statements | H228 |
Hazard Codes | F |
Risk Codes | N/A |
Safety statements | N/A |
Transport Information | UN 3089, 4.1/ PGIII |
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