Main Features
Spherical nano-nickel powder and ultrafine nickel powder are produced using a variable-current laser ion beam gas-phase method. This process combines the advantages of electrolytic nickel powder, reduced nickel powder, and atomized nickel powder, offering high purity with a nickel content of no less than99.9%The content of elements such as carbon, phosphorus, sulfur, and oxygen is low, with controllable particle size and apparent density. The powder exhibits good compressibility and excellent flowability.
Application Areas
1. Magnetic fluids produced using nano-iron, nano-cobalt, nano-nickel, and their nano-alloy powders exhibit excellent performance and can be widely applied in fields such as sealing and shock absorption, medical devices, sound regulation, and optical displays.
2. High-efficiency catalysts: Due to their large specific surface area and high activity, nano-nickel and ultrafine nickel powder exhibit extremely strong catalytic effects and can be used in organic hydrogenation reactions, automotive exhaust treatment, and more.
3. High-efficiency combustion enhancer: Adding nano-nickel powder to solid rocket fuel propellant can significantly increase the fuel's combustion rate and heat of combustion, while improving combustion stability.
4 Conductive Pastes: Electronic pastes are widely used in wiring, packaging, and connections within the microelectronics industry, playing a crucial role in the miniaturization of microelectronic devices. Electronic pastes made from nickel, copper, aluminum, and silver nanopowders offer superior performance, facilitating further miniaturization of circuits.
5 High-performance electrode materials: By using nano-nickel powder combined with appropriate processes, electrodes with extremely large surface areas can be fabricated, significantly improving discharge efficiency.
6 Activated Sintering Additives: Due to their large surface area and high proportion of surface atoms, nanopowders possess a high-energy state and exhibit strong sintering ability at lower temperatures. They serve as effective sintering additives, significantly reducing the sintering temperature of powder metallurgy products and high-temperature ceramic products.
7. Surface conductive coating treatment for metals and non-metals: Due to the highly activated surfaces of nano-aluminum, nano-copper, and nano-nickel, coating can be applied at temperatures below the melting point of the powder under oxygen-free conditions. This technology can be applied to the production of microelectronic devices.
Packaging and Storage
This product is packaged with inert gas for anti-static protection. It should be stored sealed in a dry, cool environment, and should not be exposed to air for prolonged periods to prevent moisture-induced agglomeration, which may affect dispersion performance and usage effectiveness.