We specialize in atomically-architectured quantum confined nanomaterial systems. All nanopowders are ligand-free, to give you flexibility in your choice of capping molecules and dosage for dispersion in solvents or controlled functionalization of composites.
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QUARTERLY ( 5 % ) | BI-ANNUALLY ( 10 % ) | ANNUALLY ( 15 % )
ATOMICALLY-ARCHITECTURED 1D SILICENE CARBIDE
NANOARCHITECTURE : Nanotubes
DIMENSIONS : < 3 nm diameter, up to 10 µm in length
COLOUR : Whitish Grey Nanopowder
ENERGY GAP : ~ 2.1 - 3.0 eV (direct and tunable)
BOHR EXCITON RADIUS : ~ 2.7 nm
HEAT RESISTANCE : Up to 2830 °C (5130°F)
APPLICATIONS : High-grade refractory material, ceramic, semiconductor (Eg ~ 2.1 - 2.3 eV), high stress/strain tolerance or pulverisation resistance battery material, nano ultra-capacitor material.
SiC nanotubes are structurally similar to carbon nanotubes (CNT). However, SiC nanotubes have more superior corrosion and oxidative resistance than CNTs. This makes SiC nanotubes more suitable as light weight fillers in applications such as nanocomposites, catalyst support, and in harsh environment electronics.
ATOMICALLY-ARCHITECTURED 1D BOROPHENE
NANOARCHITECTURE : < 20 nm (0.02 um) nanoparticles
COLOUR : White Nanopowder
BOHR EXCITON RADIUS : ~ 0.8 nm
HEAT RESISTANCE : Up to 2973 °C (5383 °F)
APPLICATIONS : Neutron radiation absorber, heat shielding material (aerospace industry), rocket engine's components. High-speed cutting tools, transistors, plastic resin sealing desiccant polymer additives, high temperature lubricants, insulation, high-voltage high frequency electricity, plasma arc's insulators, high-frequency induction furnace materials, cooling components, high temperature catalyst, composite ceramics.