Lanthanum Oxide Nanopowder Water Dispersion ( La2O3, 20wt%, 99.9+%, 15-20nm)


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Lanthanum Oxide Nanopowder Water Dispersion (La₂O₃, 20 wt%, 99.9+%, 15-20 nm) is a water-based dispersion containing Lanthanum Oxide (La₂O₃) nanoparticles with a particle size range of 15-20 nm and a concentration of 20% by weight. Here are the key specifications and applications of this product:

1. Composition and Properties:

  • Material: The dispersion contains Lanthanum Oxide (La₂O₃), an inorganic compound that is part of the lanthanide series. Lanthanum Oxide is used in various high-tech and high-performance applications due to its unique properties, such as high thermal stability, catalytic activity, and electronic properties.
  • Purity: The product has a 99.9+% purity, ensuring minimal impurities and reliable performance for demanding industrial, scientific, and research applications.
  • Particle Size: The nanoparticles in the dispersion are in the range of 15-20 nm, providing a high surface area, which is ideal for applications requiring increased reactivity, catalytic activity, or electrical conductivity.
  • Concentration: The 20 wt% concentration refers to the mass percentage of Lanthanum Oxide in the water dispersion, which is suitable for various applications requiring an effective balance between viscosity and performance.

2. Key Features:

  • High Purity: With a 99.9+% purity, the dispersion is suitable for sensitive applications that require minimal contamination.
  • Small Particle Size: The 15-20 nm particle size provides a high surface area that enhances chemical reactivity and interaction with other materials, making it ideal for use in catalysis, energy storage, and electronic applications.
  • Water-Based: Being a water-based dispersion, it is safer to handle and more environmentally friendly compared to solvent-based dispersions, which also makes it easier to integrate into aqueous formulations.
  • Concentration: The 20 wt% concentration provides a good balance of performance and handling properties, making it useful for a variety of industrial and scientific applications.

3. Applications:

  • Catalysis: Lanthanum Oxide (La₂O₃) is used in catalytic applications, particularly in the automotive, petrochemical, and environmental industries. The small nanoparticle size improves its effectiveness in oxidation reactions, fuel processing, and environmental remediation processes.
  • Energy Storage: Due to its electrical properties, Lanthanum Oxide is used in energy storage devices, such as batteries and supercapacitors, to improve charge retention and discharge efficiency.
  • Optics and Electronics: Lanthanum Oxide has applications in optics and electronics, particularly in phosphor materials, cathode ray tubes, and display technologies. Its high dielectric constant makes it useful for capacitors and dielectric layers in electronic devices.
  • Ceramics and Pigments: Lanthanum Oxide is commonly used in the production of advanced ceramics, including phosphor materials for lighting and optical coatings. It also acts as a pigment in certain ceramic glazes and paints.
  • Water Treatment: Lanthanum Oxide is sometimes used in water treatment applications, particularly for removing phosphates or heavy metals from water systems due to its adsorption properties.
  • Nuclear Applications: Due to its high neutron absorption capability, La₂O₃ is sometimes used in nuclear reactors and radiation shielding.

4. Advantages:

  • High Surface Area: The 15-20 nm particle size provides a high surface area, which enhances the material’s reactivity and catalytic effectiveness, making it useful in chemical and energy applications.
  • Environmental Safety: The water-based nature of this dispersion makes it easier to handle and safer for use in environmentally conscious processes compared to solvent-based dispersions.
  • High Purity: The 99.9+% purity ensures reliable and consistent performance, which is critical for demanding scientific and industrial applications.
  • Versatility: Lanthanum Oxide has a range of applications, including in energy storage, electronics, catalysis, pigments, and ceramics, making it a highly versatile material for a variety of industries.

5. Handling and Storage:

  • Storage: Store the dispersion in a cool, dry place, away from direct sunlight. Ensure the container is sealed tightly to prevent water evaporation and maintain the stability of the dispersion.
  • Handling: Wear personal protective equipment (PPE) such as gloves, goggles, and lab coats when handling the dispersion to avoid direct contact with nanoparticles.
  • Safety: While Lanthanum Oxide in nanopowder form is generally considered safe when handled properly, it is essential to avoid prolonged exposure to nanoparticles. Proper ventilation and dust control should be used when working with the dispersion.

Summary:

Lanthanum Oxide Nanopowder Water Dispersion (La₂O₃, 20 wt%, 99.9+, 15-20 nm) is a high-purity, water-based dispersion containing Lanthanum Oxide nanoparticles with a 15-20 nm size range. The dispersion is ideal for a variety of applications, including catalysis, energy storage, electronics, ceramics, pigments, and water treatment. Its high surface area and catalytic properties make it suitable for high-performance applications in automotive, chemical processing, and electronics industries.

SKU: MN07NPD0146 Category:
Measurement (ml)

100 ml, 500 ml, 1000 ml