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  • Cobalt Nanowires, Research grade, 200-300nm

Cobalt Nanowires, Research grade, 200-300nm

Average diameter: 200-300 nm
Length: up to 200 μm
Pack Sizes
Catalogue No.Quantity
RN -PL -CoW200-10mg10mg
RN -PL -CoW200-100mg100mg
RN -PL -CoW200-1g1g

 

Product Overview

Hiyka's Cobalt Nanowires are engineered to harness the exceptional properties of cobalt at the nanoscale, offering advanced solutions for magnetic, catalytic, and electronic applications. With their high aspect ratio and unique magnetic properties, these nanowires are perfectly suited for the development of high-density magnetic storage devices, efficient catalysis processes, and sensitive magnetic sensors. Our cobalt nanowires represent a significant advancement in material science, designed to meet the stringent requirements of both research and industry in pursuit of innovation and performance.

Key factor

  • Exceptional Magnetic Properties: Exhibits superior magnetic characteristics, including high coercivity and saturation magnetization, ideal for magnetic data storage and sensing applications.
  • High Aspect Ratio: The elongated structure provides a high surface area to volume ratio, enhancing catalytic activity and facilitating efficient reactions.
  • Enhanced Electrical Conductivity: Offers improved electrical conductivity, making them suitable for use in electronic components and conductive materials.
  • Chemical Stability: Demonstrates excellent chemical stability, ensuring durability and long-term performance in various environments.
  • Thermal Stability: Maintains structural and magnetic integrity at elevated temperatures, suitable for applications requiring high thermal resistance.

Applications

  • Magnetic Storage Devices: Integral to the development of next-generation high-density storage media, enabling increased data storage capacity.
  • Catalysis: Utilized in catalytic processes for chemical synthesis and environmental remediation, enhancing reaction rates and selectivity.
  • Magnetic Sensors: Applied in the fabrication of sensitive magnetic sensors for automotive, aerospace, and consumer electronics, offering precise detection capabilities.
  • Energy Storage: Investigated for potential applications in batteries and supercapacitors, contributing to improved energy density and charge/discharge rates.
  • Biomedical Research: Explored for use in targeted drug delivery and magnetic hyperthermia treatment, leveraging magnetic properties for therapeutic applications.

Advantages

  • Advanced Performance: Delivers cutting-edge capabilities in magnetic storage, catalysis, and sensing, driving technological advancements.
  • Versatile Integration: Compatible with a variety of substrates and manufacturing processes, enabling broad application potential across multiple industries.
  • Sustainable Solution: Offers an efficient and effective material choice for catalytic and energy storage applications, supporting environmental sustainability.
  • High-Quality Manufacturing: Produced under strict quality control measures to ensure purity, consistency, and superior performance.
  • Scalable Production: Ready for large-scale manufacturing to meet the demands of industrial applications, ensuring consistent quality and availability.

References 

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