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Nonoxide nanoparticles

Nonoxide nanoparticles


Nanoparticles are of great scientific interest as they are effectively a bridge between bulk materials and atomic or molecular structures. A bulk material should have constant physical properties regardless of its size, but at the nano-scale this is often not the case. Size-dependent properties are observed such as quantum confinement in semiconductor particles, surface plasmon resonance in some metal particles and superparamagnetism in magnetic materials.

Otto Chemie Pvt Ltd - Manufacturers of Nonoxide nanoparticles in India.

Nonoxide nanoparticles

1 to 45 of 45 item(s) displayed

Code Product Name CAS No. MSDS Pricing
A 0625 Aluminium nitride, 99.5% 24304-00-5 View
H 0425 Hydroxyapatite, aqueous paste, <50 nm, 15 wt.% View
HN 0189 Hydroxyapatite, nanopowder, <200 nm particle size (BET), ≥97% 12167-74-7 View
MN 067 Molybdenum(IV) sulfide nanopowder, APS 90 nm, 99% 1317-33-5 View
NA 100 Aluminium nitride nanopowder, APS 70-80 nm, 99.5% 24304-00-5 View
NA 105 Aluminium nitride nanopowder, APS 40 nm, 99.9% 24304-00-5 View
NB 100 Boron nitride nanopowder (hexagonal) APS 137 nm, 99% 10043-11-5 View
NB 105 Boron nitride nanopowder, APS 0.6~1.2 μm, 99.8% 10043-11-5 View
NB 110 Boron nitride nanopowder, APS 80-100 nm, 99.8% 10043-11-5 View
NB 120 Boron Nitride Nanopowder, APS 5 μm, 99% 10043-11-5 View
NC 006 Chromium carbide nanopowder, APS <100 nm, 99.9% 12012-35-0 View
NL 100 Lanthanum fluoride nanopowder, 90% 13709-38-1 View
NS 100 Silicon carbide nanopowder (β), APS 50-60 nm, 95%+ 409-21-2 View
NS 105 Silicon carbide nanopowder (β), APS 40-55 nm, 99.9% 409-21-2 View
NS 110 Silicon carbide nanopowder (β), APS 20-30 nm, 97%+ 409-21-2 View
NS 120 Silicon carbide nanopowder (β), APS 10 nm, 97%+ 409-21-2 View
NS 125 Silicon carbide (amorphous) nanopowder, APS 15 nm, 99%+ 409-21-2 View
NS 130 Silicon carbide nanowhisker (beta, 99%+) 409-21-2 View
NS 135 Silicon Nitride, nanopowder, APS 15-30 nm, 98.5%+ 12033-89-5 View
NS 140 Silicon Nitride Nanopowder, APS 0.3-0.5 μm, 99.9% 12033-89-5 View
NS 145 Silicon Nitride Nanopowder, APS 0.3-0.5 μm, 99.99% 12033-89-5 View
NS 150 Silicon Nitride Nanopowder, APS 0.6-0.8 μm, 99.9% 12033-89-5 View
NS 155 Silicon Nitride Nanopowder, APS 0.8-1 μm, 99.9+% 12033-89-5 View
NS 160 Silicon nitride nanopowder, APS 2 μm, (α-phase) 99.9+% 12033-89-5 View
NS 165 Silicon Nitride Nanopowder (β-phase), APS 2 μm, 99.9% 12033-89-5 View
NT 090 Titanium nitride, nanopowder, APS 30-50 nm, 99.5% 25583-20-4 View
NT 095 Titanium nitride nanopowder, APS 1-3 μm, 99.5% 25583-20-4 View
NT 100 Titanium boride nanopowder, APS 2-12 μm, 98% 12045-63-5 View
NT 101 Titanium boride, nanopowder, APS 3-8 μm, 99.9% 12045-63-5 View
NT 105 Titanium carbide nanopowder, APS 40 nm, 98%+ 12070-08-5 View
NT 110 Titanium carbide, Nanopowder, APS 80-130 nm, 99% 12070-08-5 View
NT 115 Titanium nitride nanopowder, APS 20 nm, 97%+ 25583-20-4 View
NT 120 Tungsten carbide nanopowder, APS 1-30 μm, 99.5% 12070-12-1 View
NT 125 Tungsten carbide / cobalt nanopowder, APS 60-250 nm, 99.5% (Co=8Wt%) 12070-12-1 View
NT 140 Titanium hydride, Nanopowder, APS 1-3 μm, 99% 7704-98-5 View
NT 141 Titanium hydride, nanopowder, APS <100 nm, 99.9% 7704-98-5 View
NT 143 Titanium hydride, nanopowder, APS 10-30 μm, 99.9% 7704-98-5 View
NT 144 Tungsten sulfide nanopowder, APS 90 nm, 99% 12138-09-9 View
NT 180 Titanium carbide, Nanopowder, APS 100-200 nm, 99% 12070-08-5 View
NT 243 Tungsten carbide nanopowder, APS 30-100 nm, 99.95% 12070-12-1 View
NT 307 Titanium carbide MXene (multilayer nanoflakes) 12363-89-2 View
NY 100 Ytterbium fluoride / coated nano W / 0.3% pyddp-18, 99% 13860-80-0 View
NZ 105 Zirconium hydride, nanopowder, APS 1-5 μm, 99%+ 7704-99-6 View
NZ 108 Zirconium diboride, APS 100-200 nm, 99.5% 12045-64-6 View
YN 171 Yttrium iron oxide nanopowder, <100 nm particle size (BET), 99.9% 12063-56-8 View

DisclaimerThe above particulars do not release the customer from the obligation to carry out an inspection of goods received.
Not for medical, household or any other uses, for lab use only, Please test before use.