Hydroxylated Boron Nitride Nanosheets (BNNSs)
Hydroxylated Boron Nitride Nanosheets (BNNSs)
Hydroxylated Boron Nitride Nanosheets (BNNSs)
Hydroxylated Boron Nitride Nanosheets (BNNSs)

Hydroxylated Boron Nitride Nanosheets (BNNSs)

  • element:Boron (B), Nitrogen (N)
  • purity:99%
  • shape:Nanosheets
  • specification:Nanosheet Diameter: 0.1-0.4 µm
  • packaging:Customizable

Hydroxylated boron nitride nanosheets (BNNSs) provide optimized surface functionalization, superior thermal stability, and enhanced dispersibility. Designed for advanced coatings and composite applications, they ensure efficient heat dissipation, extended durability, and high adaptability.

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Product Overview
Hydroxylated boron nitride nanosheets (BNNSs) are derived from the modification of boron nitride nanosheets by adding hydroxyl groups, enhancing their dispersion in water and broadening their range of applications. Boron nitride nanosheets are two-dimensional materials with a layered structure similar to graphite, where layers are weakly bound by van der Waals forces. This product maintains stability at high temperatures and exhibits excellent thermal conductivity and electrical insulating properties, making it suitable for a wide range of applications in electronics, materials, and pharmaceuticals.

Key Features

  • Excellent Thermal Stability:BNNSs maintain structural integrity under high-temperature environments, making them suitable for extreme working conditions.
  • Good Chemical Inertness:Exhibits high stability in most chemical environments.
  • High Thermal Conductivity:Outstanding thermal conductivity, making them ideal for heat dissipation applications.
  • Electrical Insulation:Excellent electrical insulation properties, making them ideal for use in electronic device insulation layers.
  • Good Water Dispersion:The surface is modified with hydroxyl groups, allowing BNNSs to form stable suspensions in water, suitable for a variety of applications.

Applications

  • Insulation and Heat Dissipation Materials:Due to their excellent electrical insulation and high thermal conductivity, BNNSs are ideal for insulation and heat dissipation layers in electronic devices.
  • Deep Ultraviolet Optoelectronic Devices:BNNSs are suitable for the manufacture of deep ultraviolet optoelectronic devices due to their wide bandgap properties.
  • Electronic Packaging Materials:BNNSs can be added to polymer matrices to improve the mechanical strength, insulation, and thermal stability of electronic packaging materials.
  • Reinforced Materials:Adding BNNSs to polymer, ceramic, or metal matrix composites significantly enhances the mechanical properties of the materials.
  • Drug Delivery Systems:BNNSs serve as drug carriers for targeted drug delivery to specific disease sites. They exhibit good biocompatibility and can be surface-functionalized for controlled drug release.
ParameterValue
Purity99 wt%
Flake Size0.1-0.4 μm
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