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Carbon Nanorods are elongated particles ranging from 10 to 120 nanometers (nm) with specific surface area (SSA) in the 30 - 70 m2/g range. Uses: Development research is underway in nano electronics and photonics materials, such as mems and nems, bio nano materials, such as biomarkers, bio diagnostics & bio sensors, and related nano materials, for use in polymers, textiles, fuel cell layers , composites and solar energy materials. applications for carbon nanorods generally involve their magnetic properties and include in catalysts and magnetic recording and in medical sensors and bio medicine as a contrast enhancement agent for magnetic resonance imaging (mri). carbon particles are being tested for site specific drug delivery agents for cancer therapies and in coatings, plastics, nanowire, nanofiber and textiles and in certain alloy and catalyst applications. further research is being done for their potential electrical, dielectric, magnetic, optical, imaging, catalytic, biomedical and bioscience properties. carbon nano particles are generally immediately available in most volumes. additional technical, research and safety (msds) information is available. Group: Nanorods. CAS No. 7440-44-0. Product ID: Carbon. Molecular formula: 12.01. Mole weight: C. C. 99%|99.9%|99.99%|99.999%.
Scandium Nanorods are elongated particles ranging from 10 to 120 nanometers (nm) with specific surface area (SSA) in the 30 - 70 m2/g range. Nano Scandium is also available passivated and in Ultra hHigh purity and hHigh purity and coated and dispersed forms. They are also available as a dispersion through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanorods in solution either using surfactant or surface charge technology. Group: Nanorods. CAS No. 7440-20-2. Molecular formula: 45g/mol. Mole weight: Sc. [Sc]. 99%, 99.9%, 99.99%, 99.999%.
Scandium Nanorods
Scandium Nanorods are elongated particles ranging from 10 to 120 nanometers (nm) with specific surface area (SSA) in the 30 - 70 m2/g range. Nano Scandium is also available passivated and in Ultra hHigh purity and hHigh purity and coated and dispersed forms. They are also available as a dispersion through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanorods in solution either using surfactant or surface charge technology. Group: Nanorods. CAS No. 7440-20-2. Molecular formula: Sc. Mole weight: 45g/mol. Appearance: Silvery. Purity: 99%, 99.9%, 99.99%, 99.999%. Canonical SMILES: [Sc]. Density: 2.985g/mL. ECNumber: 231-129-2. Catalog: ACM7440202.
White TIN is an almost silver-white, ductile, malleable, lustrous solid. mp 232° C, bp: 2507°C. Density: 7.3 g/cm³. Pure white tin becomes non-metallic powdery gray tin if held for a sustained period at temperatures less than 13°C.;DryPowder; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals, OtherSolid; OtherSolid; OtherSolid, Liquid;WHITE CRYSTALLINE POWDER.;Gray to almost silver-white, ductile, malleable, lustrous solid.;Appearance and odor vary depending upon the specific organotin compound.;Gray to almost silver-white, ductile, malleable, lustrous solid. Group: Nanorods. CAS No. 7440-31-5. Product ID: tin. Molecular formula: 118.69. Mole weight: Sn. [Sn]. 99%, 99.9%, 99.99%, 99.999%.
Tin Nanorods
White TIN is an almost silver-white, ductile, malleable, lustrous solid. mp 232° C, bp: 2507°C. Density: 7.3 g/cm³. Pure white tin becomes non-metallic powdery gray tin if held for a sustained period at temperatures less than 13°C.;DryPowder; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals, OtherSolid; OtherSolid; OtherSolid, Liquid;WHITE CRYSTALLINE POWDER.;Gray to almost silver-white, ductile, malleable, lustrous solid.;Appearance and odor vary depending upon the specific organotin compound.;Gray to almost silver-white, ductile, malleable, lustrous solid. Group: Single crystals. CAS No. 7440-31-5. Product ID: tin. Molecular formula: 118.69. Mole weight: Sn. [Sn]. InChI=1S/Sn. ATJFFYVFTNAWJD-UHFFFAOYSA-N. 99%, 99.9%, 99.99%, 99.999%.
Titanium Dioxide Nanorods
Titanium Dioxide Nanorods. Group: Nanorods. CAS No. 13463-67-7.
Tungsten Nanorods
Tungsten Nanorods. Group: Nanorods. CAS No. 7440-33-7. Molecular formula: 183.85. Mole weight: W. [W]. 99%, 99.9%, 99.99%, 99.999%.
1-(3-Dimethylaminopropyl)-3-ethylcarbodiimide methiodide is a water soluble carbodiimide used as an amide coupling reagent and cross-linking agent. 1-(3-Dimethylaminopropyl)-3-ethylcarbodiimide methiodide is effective in amide coupling where either the amine or the carboxylic acid is immobilised onto a polymeric solid support, such as core-shell structured nanoaggregates including nanospheres and nanorods. 1-(3-Dimethylaminopropyl)-3-ethylcarbodiimide methiodide can be also employed in the binding formation of DNA with N-acylurea derivatives of proteins, such as albumin and transferrin. Group: Biochemicals. Alternative Names: EDC methiodide; EDAC MeI. Grades: Highly Purified. CAS No. 22572-40-3. Pack Sizes: 5g, 10g, 25g, 50g, 100g. Molecular Formula: C8H17N3·CH3I, Molecular Weight: 297.18. US Biological Life Sciences.
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CdSeS/ZnS alloyed quantum dots
CdSeS/ZnS alloyed quantum dots. Uses: Cdse/cds quantum rods possess excellent optoelectronic properties such as tunable emission wavelength, high extinction coefficient, polarized emission, enhanced quantum yield and exhibit an order of magnitude higher brightness. these outstanding properties make the cdse/cds nanorods suitable for applications such as displays, solid state lighting (led) and lasers as these require strong fluorescence. Group: Quantum dots.
CdSeS/ZnS alloyed quantum dots kit
CdSeS/ZnS alloyed quantum dots kit. Uses: Cdse/cds quantum rods possess excellent optoelectronic properties such as tunable emission wavelength, high extinction coefficient, polarized emission, enhanced quantum yield and exhibit an order of magnitude higher brightness. these outstanding properties make the cdse/cds nanorods suitable for applications such as displays, solid state lighting (led) and lasers as these require strong fluorescence. Group: Quantum dots.
CdSe/ZnS Core-shell Type Quantum Dots
Reactive group: Carboxylic acid. Uses: Cdse/cds quantum rods possess excellent optoelectronic properties such as tunable emission wavelength, high extinction coefficient, polarized emission, enhanced quantum yield and exhibit an order of magnitude higher brightness. these outstanding properties make the cdse/cds nanorods suitable for applications such as displays, solid state lighting (led) and lasers as these require strong fluorescence. Group: Quantum dots.
cis-Cinnamaldehyde
cis-Cinnamaldehyde acts as an antibacterial agent against Escherichia Coli and Salmonella in vitro. Causes cell structural damage resulting in leakage of cellular content. cis-Cinnamaldehyde is derived from (Z)-Cinnamyl Alcohol (C442105), a useful synthetic intermediate and is also used as a reagent in the synthesis of one-dimensional ZnO nanorods with well-defined morphology as highly selective photocatalyst. Group: Biochemicals. Grades: Highly Purified. CAS No. 57194-69-1. Pack Sizes: 100mg, 500mg. Molecular Formula: C9H8O, Molecular Weight: 132.16. US Biological Life Sciences.
Fullerene (C60) Nanotubes, Single-Walled and Multi-Walled - also known as Buckytubes or Buckyball Nanotubes, are nano scale cylindrical tubes of graphitic carbon with numerous applications as the stiffest and strongest known fibers and because of their unique electrical properties. They are available in single walled, double walled and multi-walled forms, bundled and unbundled, with tube lengths from 5 to 30 nanometers (nm) and specific surface area (SSA) in the 50 to 500 m2/g range. Fullerene Nanotubes are available in ultra high purity and high purity and coated suspended and dispersed forms. They are also available as a nanofluid through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanoparticles in solution either using surfactant or surface charge technology. Nanofluid dispersion and coating selection technical guidance is also available. Other nanostructures include nanorods, nanowhiskers, nanohorns, nanopyramids and other nanocomposites. Surface functionalized nanoparticles allow for the particles to be preferentially adsorbed at the surface interface using chemically bound polymers. Group: Nanotubes. Alternative Names: Buckeytubes, Buckyballnanotubes, c60nanotubes. CAS No. 99685-96-8. Product ID: (C\{60}-I\{h})[5,6] fullerene. Molecular formula: 720.64. Mole weight: C60. C12= C3C4= C5C6= C1C7= C8C9= C1C% 10= C% 11C (= C29) C3= C2C3= C4C4= C5C5= C9C6= C7C6= C7C8=
Fullerene Nanotubes, Single-Walled
Fullerene (C60) Nanotubes, Single-Walled and Multi-Walled - also known as Buckytubes or Buckyball Nanotubes, are nano scale cylindrical tubes of graphitic carbon with numerous applications as the stiffest and strongest known fibers and because of their unique electrical properties. They are available in single walled, double walled and multi-walled forms, bundled and unbundled, with tube lengths from 5 to 30 nanometers (nm) and specific surface area (SSA) in the 50 to 500 m2/g range. Fullerene Nanotubes are available in ultra high purity and high purity and coated suspended and dispersed forms. They are also available as a nanofluid through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanoparticles in solution either using surfactant or surface charge technology. Nanofluid dispersion and coating selection technical guidance is also available. Other nanostructures include nanorods, nanowhiskers, nanohorns, nanopyramids and other nanocomposites. Surface functionalized nanoparticles allow for the particles to be preferentially adsorbed at the surface interface using chemically bound polymers. Group: Nanotubes. Alternative Names: Buckeytubes, Buckyballnanotubes, c60nanotubes. CAS No. 99685-96-8. Product ID: (C\{60}-I\{h})[5,6] fullerene. Molecular formula: 720.64. Mole weight: C60. C12= C3C4= C5C6= C1C7= C8C9= C1C% 10= C% 11C (= C29) C3= C2C3= C4C4= C5C5= C9C6= C7C6= C7C8
Iron Oxide Nano Rods. Group: Nanorods. CAS No. 1309-37-1. ≥ 99%.
Silicon Carbide Micronwhisker
Silicon Carbide (SiC) Micronwhiskers, Nanoparticles, nanodots or nanopowder are spherical high surface area particles. Nanoscale Silicon Carbide Particles are typically 10 - 150 nanometers (nm) with specific surface area (SSA) in the 10 - 75 m2/g range. Nano Silicon Carbide Particles are also available in ultra high purity and high purity and coated and dispersed forms. They are also available as a dispersion through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanoparticles in solution either using surfactant or surface charge technology. Nanofluid dispersion and coating selection technical guidance is also available. Other nanostructures include nanorods, nanowhiskers, nanohorns, nanopyramids and other nanocomposites. Surface functionalized nanoparticles allow for the particles to be preferentially adsorbed at the surface interface using chemically bound polymers. Group: Nanopowders. Alternative Names: methanidylidynesilicon; Carborundum; Silicon monocarbide; Betarundum Carborundeum; carbon silicide; Green densic. CAS No. 409-21-2. Product ID: methanidylidynesilicon. Molecular formula: 40.1. Mole weight: SiC. [C-]#[Si+]. InChI=1S/CSi/c1-2. HBMJWWWQQXIZIP-UHFFFAOYSA-N. 0.99.
Silicon Carbide Micronwhisker
Silicon Carbide (SiC) Micronwhiskers, Nanoparticles, nanodots or nanopowder are spherical high surface area particles. Nanoscale Silicon Carbide Particles are typically 10 - 150 nanometers (nm) with specific surface area (SSA) in the 10 - 75 m2/g range. Nano Silicon Carbide Particles are also available in ultra high purity and high purity and coated and dispersed forms. They are also available as a dispersion through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanoparticles in solution either using surfactant or surface charge technology. Nanofluid dispersion and coating selection technical guidance is also available. Other nanostructures include nanorods, nanowhiskers, nanohorns, nanopyramids and other nanocomposites. Surface functionalized nanoparticles allow for the particles to be preferentially adsorbed at the surface interface using chemically bound polymers. Group: other nano materials. Alternative Names: methanidylidynesilicon; Carborundum; Silicon monocarbide; Betarundum Carborundeum; carbon silicide; Green densic. CAS No. 409-21-2. Product ID: methanidylidynesilicon. Molecular formula: 40.1. Mole weight: SiC. [C-]#[Si+]. 0.99.
Sodium metatitanate
SODIUM TITANATE is used as a low-voltage sodium titanium oxide insertion electrode for sodium-ion batteries 1 Used for preparation of: Titania nanorods and nanowires via a hydrothermal method for use in lithium-ion storage batteries 2 Photocatalytic titanate nanotube thin films via a hydrothermal method 3 Protonated titanate nanotubes as solid acid catalysts 4 Nano-sized supports of ruthenium nanoparticles for catalytic ammonia decomposition. Group: Heterocyclic organic compound. CAS No. 12034-36-5. Molecular formula: Na2Ti3O7. Mole weight: 301.58. Catalog: ACM12034365.
Zinc acetate dihydrate
Zinc acetate dehydrate was used as seeds to grow ZnO nanorods on the microfibers of PET (polyethylene terephthalate) fabric. It may be used in the synthesis of layered Zn-arylphosphonates with potential application in sorption, ion exchange or catalysis. Also it may be used in the ultrasonic preparation of zinc sulfide nanoparticles coated on silica particles. Uses: Zinc acetate [zn(c2h3o2)2] is used as a mordant for dyeing cloth, as a wood preservative, as a laboratory agent, and as a dietary supplement.zinc acetate has been used as an excipient in a variety of pharmaceutical formulations including topical gels, lotions, and solutions, and subcutaneous injections. it has also been investigated for use in an oral controlled-release formulation for water-soluble drugs in combination with sodium alginate and xanthan gum. therapeutically, zinc acetate has been used in oral capsules for the treatment of wilson's disease. zinc acetate has also been demonstrated to be effective as a spermicide in vaginal contraceptives. Group: Organic zinc. Alternative Names: Acetic acid,zine salt,dihydrate. CAS No. 5970-45-6. Molecular formula: C4H10O6Zn. Mole weight: 219.5. Appearance: White solid. Purity: 95%+. IUPACName: Zinc;diacetate;dihydrate. Canonical SMILES: CC(=O)[O-].CC(=O)[O-].O.O.[Zn+2]. Density: 1.84 g/mL at 20 °C (lit.). Catalog: ACM5970456-1.
Zinc acetate dihydrate
Zinc acetate dehydrate was used as seeds to grow ZnO nanorods on the microfibers of PET (polyethylene terephthalate) fabric. It may be used in the synthesis of layered Zn-arylphosphonates with potential application in sorption, ion exchange or catalysis. Also it may be used in the ultrasonic preparation of zinc sulfide nanoparticles coated on silica particles. Uses: Zinc acetate [zn(c2h3o2)2] is used as a mordant for dyeing cloth, as a wood preservative, as a laboratory agent, and as a dietary supplement.zinc acetate has been used as an excipient in a variety of pharmaceutical formulations including topical gels, lotions, and solutions, and subcutaneous injections. it has also been investigated for use in an oral controlled-release formulation for water-soluble drugs in combination with sodium alginate and xanthan gum. therapeutically, zinc acetate has been used in oral capsules for the treatment of wilson's disease. zinc acetate has also been demonstrated to be effective as a spermicide in vaginal contraceptives. Group: Solution deposition precursors. Alternative Names: Acetic acid,zine salt,dihydrate. CAS No. 5970-45-6. Product ID: Zinc; diacetate; dihydrate. Molecular formula: 219.5. Mole weight: C4H10O6Zn. CC(=O)[O-].CC(=O)[O-].O.O.[Zn+2]. InChI=1S/2C2H4O2.2H2O.Zn/c2*1-2(3)4; /h2*1H3, (H, 3, 4); 2*1H2; /q; +2/p-2. BEAZKUGSCHFXIQ-UHFFFAOYSA-L. 95%+.
gold nanorod
Gold-coloured powder or tiny sheets;Soft yellow metal; gold-colored powder or tiny sheets. Group: Nanoparticles. CAS No. 7440-57-5. Product ID: gold. Molecular formula: 196.96657g/mol. Mole weight: Au;Au. [Au]. InChI=1S/Au. PCHJSUWPFVWCPO-UHFFFAOYSA-N.
Phosphocreatine
Phosphocreatine used in the synthesis of hydroxypatite nanorod/nanosheets. Phosphocreatine is used in the treatment of heart and brain ischemia. Group: Biochemicals. Alternative Names: Creatine phosphate; Creatinephosphoric acid; N- (Phosphonoamidino) sarcosine; N-Phosphorocreatine; N-Phosphorylcreatine; Phosphocreatine; Phosphorylcreatine. Grades: Highly Purified. CAS No. 67-07-2. Pack Sizes: 1g. Molecular Formula: C?H??N?O?P, Molecular Weight: 211.11. US Biological Life Sciences.
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