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Nano neodymium oxide
- Commodity name: Nano neodymium oxide
Number:
X005
Key words:
- Product Description
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Product Features:
Nano neodymium oxide (chemical formula: Nd2O3) has a light blue powdery appearance, a melting point of about 1900℃, and partially generates high-valent neodymium oxides when heated in air. It is insoluble in water but can dissolve in inorganic acids. Nano neodymium oxide exhibits properties not found in conventional materials in areas such as magnetism, optics, and electricity.
Product Parameters:
Popular Models
JH-202
JH-101
Appearance
Light blue powder
Light blue powder
Purity
≥99.9%
≥99%
Particle Size
0-5μm
5-10μm
More model parameters vary (customization supported), please contact customer service for detailed parameters. Application Industries:
1. Nano neodymium oxide can enhance the color and stability of pigments and is widely used in various ceramic products.
2. Nano neodymium oxide can improve the performance of alloys, especially when adding 1.5% to 2.5% of nano neodymium oxide to magnesium or aluminum alloys, which can significantly enhance the high-temperature performance, gas tightness, and corrosion resistance of the alloys, making it an ideal choice for aerospace materials.
3. Nano neodymium oxide can be used in laser surgery, particularly the short-wave laser beams produced by neodymium-doped yttrium aluminum garnet, which are widely used for welding and cutting thin materials with a thickness of less than 10mm. Additionally, nano neodymium oxide is also used to manufacture strong magnetic neodymium iron boron, which is a key material for producing high-performance permanent magnets.
4. Nano neodymium oxide can lower the thermal decomposition temperature and improve catalytic efficiency, widely used in various chemical reactions.
5. In the fields of glass and rubber, nano neodymium oxide is used for coloring glass and ceramic materials, as well as rubber products and additives, which can enhance the performance and external aesthetics of the materials.
6. Nano neodymium oxide combined with graphene composites is used to modify membranes to improve battery performance. This composite material can adsorb and convert polysulfides, reducing the dissolution and shuttle effect of lithium polysulfides, thereby enhancing the cycling stability and capacity retention of lithium-sulfur batteries.
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