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Carbon nitride catalysts. Uses: Designed for use in research and industrial production. Product Category: Inorganic Nanomaterials. CAS No. 7440-44-0. Purity: 0.99. Product ID: ACM7440440-176. Alfa Chemistry ISO 9001:2015 Certified.
Titanium Carbon Nitride TiCN Powder. Group: Carbide powders. CAS No. 12654-86-3. Mole weight: TiCN. >99% or customized.
(1-Methoxy-1-methylethyl)benzene
(1-Methoxy-1-methylethyl)benzeneis used in the preparation and characterization of graphene sheet/polymeric carbon nitride nanocomposites as metal-free catalysts for hydrocarbon oxidization. Group: Biochemicals. Grades: Highly Purified. CAS No. 935-67-1. Pack Sizes: 250mg, 1g. Molecular Formula: C10H14O, Molecular Weight: 150.22. US Biological Life Sciences.
Worldwide
Barbituric acid
Barbituric acid (BA) may be used in the preparation of the corresponding hemiaminals, via chemoselective reduction in the presence of SmI2/H2O reagent. It may be used in the preparation of BA- modified conjugated carbon nitride nanosheets. Barbituric acid is a useful acid for organic and drug syntheses. Its dihydrate form can be synthesized from barbituric acid via crystallization from aqueous solution. Crystal structure of barbituric acid (in tautomeric form) has been investigated by a three dimensional fourier transform method. Its enol crystal form has been reported to be thermodynamically stable. Group: Biochemicals. Alternative Names: 2,4,6(1H,3H,5H)-Pyrimidinetrione; 1,2,3,4,5,6-Hexahydro-2,4,6-pyrimidinetrione; 2,4,6-Pyrimidinetriol; 2,4,6-Pyrimidinetrione; 2,4,6-Trihydroxypyrimidine; 2, 4, 6-Trioxohexa hydropyrimidine; 6-Hydroxyuracil; Hexahydropyrimidine-2,4,6-trione; Malonylurea; NSC 7889; Fluorouracil. Grades: Purified. CAS No. 67-52-7. Pack Sizes: 100g, 500g. US Biological Life Sciences.
Graphene Oxide (GO) support film is available as Single Layer (0.6~1nm) or Double Layer (1~1.5nm) measured by EELS. It is hydrophilic and naturally placed over the ultra-flat Silicon Dioxide Substrate, Lacey Carbon (300 Mesh Copper TEM Grids) or Holy Silicon Nitride Membranes with typically 50-70% coverage. Available in package of 5, 10 or 25 pieces. A. 300 Mesh Copper TEM grid with Lacey Carbon film; B. 00nm-thick 2μm Diameter Holey Silicon Nitride Membrane on 200μm-thick Silicon Substrate; C. 5x5mm 675μm-thick Silicon Die with 200nm Thermal Oxide. Uses: 1) catalyst2) supercapacitors3) solar energy4) graphene semiconductor chips5) conductive graphene film6) graphene computer memory7) biomaterials8) transparent conductive coatings. Group: Graphenes.
Graphene Oxide (GO) TEM Support Films
Graphene Oxide (GO) support film is available as Single Layer (0.6~1nm) or Double Layer (1~1.5nm) measured by EELS. It is hydrophilic and naturally placed over the ultra-flat Silicon Dioxide Substrate, Lacey Carbon (300 Mesh Copper TEM Grids) or Holy Silicon Nitride Membranes with typically 50-70% coverage. Available in package of 5, 10 or 25 pieces. A. 300 Mesh Copper TEM grid with Lacey Carbon film; B. 00nm-thick 2μm Diameter Holey Silicon Nitride Membrane on 200μm-thick Silicon Substrate; C. 5x5mm 675μm-thick Silicon Die with 200nm Thermal Oxide. Uses: 1) catalyst2) supercapacitors3) solar energy4) graphene semiconductor chips5) conductive graphene film6) graphene computer memory7) biomaterials8) transparent conductive coatings. Group: other nano materials.
Hexagonal Boron Nitride (h-BN) on Copper Foil
Vapor grown carbon nanofibers (VGCF) can impart dissipative properties and enhance mechanical properties to polymer, ceramic and metal matrices. Tailor made surface functionalization of carbon nanofibers is possible owing to its unique surface state. Uses: Proton conductors fuel cells water electrolysis graphene-based devices. Group: other nano materials compounds nanoparticles.
Hexagonal Boron Nitride (h-BN) on Si/SiO2
Single-walled carbon nanohorns are made of graphene sheets with long cone-shaped tips with the diameters of 2-5 nm and the length of 40-50 nm. Thousands of carbon nanohorns form spherical aggregates of about 100 nm in diameter. Uniform size High dispersion High purity, no metallic compound Large surface area Utilization of internal space in carbon nanohorn Holes were formed on the sheath of carbon nanohorn by oxidation treatments. Several materials can be accessible into thecarbon nanohorn sheath. Uses: Proton conductors fuel cells water electrolysis graphene-based devices. Group: other nano materials compounds nanoparticles.
Hexagonal boron nitride ink
for inkjet printing. Group: Carbon nanomaterials.
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