Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)
Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)
Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)
Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)
Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)
Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)
Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)
Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)
Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)
Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)

Boron Nitride Nanotubes (NanoBorNT-90%)- OD: 30-50 nm | L: >10 μm (Naieel - 100-300 milligrams)

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Boron Nitride Nanotubes (BNNT) - OD: 30-50 nm | L: >10 μm (Naieel - 100-300 mg)

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Quick Details 
Place of Origin: Daejeon, South Korea
Brand Name: Naieel
Model Number: NMT-NanoBorNT80
Application: Defense, Aerospace, Nuclear, Energy, Environment, Biomedicals
Chemical Composition: Boron Nitride Nanotubes
Appearance: White powder
Purity of BNNT: >90 wt.% (h-BN>99 wt.%)
Impurity: <1 wt% metallic nanoparticles
Outer Diameter: 30-50 nm
Inner diameter: 10-20 nm
Tube length: >10 μm
BET SSA: ~40 m2/g
Density: ~2 g/cm3
Thermal conductivity coefficient (k) = 585 W/mK
Quantity: 100, 200, or 300 milligrams

Publications

BNNT as catalyst support:
Synthesis of Boron Nitride Nanotubes Incorporated with Pd and Pt Nanoparticles for Catalytic Oxidation of Carbon Monoxide (Ind. Eng. Chem. Res. 2019, 58, 20154−20161)

BNNT/Waterborne polyurethane–acrylate (WPUA) Composites:
Water-resistant coating material. (RSC Adv., 2021,11, 12748-12756)

BNNT composite for motion detection:
BNNT-Based Contact Electrification-Assisted Piezoelectric Nanogenerator as a Kinematic Sensor for Motion Detection of a Robot Finger (ACS Energy Lett. 2020, 5, 1577−1585)