Nano CuO

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    Nano CuO

    CuO Nanoparticle Features:

    Copper oxide nanoparticleis a brownish-black powder, 40nm, with 99% purity and 6.3-6.49 g/cm3 density and melting point of 326 . It is

    soluble in dilute acid, NH4Cl, (NH4) 2CO3, potassium cyanide solution, insoluble in water, and it dissolves slowly in alcohols, ammonia solution. It can

    be reduced to metallic copper when meets hydrogen or carbon monoxide under high temperature. Copper oxide is widely used in the field of catalysis,

    superconductors, ceramics as a kind of important inorganic materials . It can be used as a catalyst and catalyst support, as well as electrode active

    materials. CuO nanoparticle can also be used as burning rate catalyst in rocket propellant. Nano copper oxide shows superior catalytic activity and

    selectivity than that of the common copper oxide powder. The particle size of nanometer copper oxide is between 1-100 nm. Compared with the

    ordinary copper oxide, nano CuO has peculiar physical and chemical properties such as: surface effect, superiority of the quantum size effect, volume

    effect and macroscopic quantum tunneling effect in magnetic, optical absorption, chemical activity and thermal resistance, catalysis, and the melting

    point. Nano copper oxide attracts more and more people's attention, and become one of the most extensively used inorganic materials.

    Nano CuO Specification

    Item

    Apperance APS Purity SSA Property

    CuO Nanoparticle Black Powder 40-60nm 99 80m2/g nearly spherical

    Nano Copper Oxide CuO Applications:

    Insoluble in water. dissolve slowly in alcohol or ammonia solution. Soluble in dilute acids, NH4Cl, (NH4) 2CO3, potassium cyanide solution. Under high

    temperature, copper oxide meet with hydrogen or carbon monoxide, can restore copper metal. Nano copper oxide is a widely used material. It has

    been applied to the catalyst, superconducting materials, thermoelectric materials, sensing materials, glass, ceramics and other fields. In addition, the

    nano-copper oxide can be used as rocket propellant combustion catalyst. It not only can significantly improve the homogeneous propellant burning

    rate, lower pressure index, but also can better perform as the catalyst for the AP composite propellant. More use such as: Ceramic resistors, Gas

    sensors, Magnetic storage media, Near-infrared tilters, Photoconductive and photothermal applications, Semiconductors, Solar energy transformation,

    Catalysts, High-tech superconductors......

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    Zinc BromateHydrate

    13517-27-6

    Zn(BrO3)2-6H2O

    Anhydrous14519-07-4

    Zn(BrO3)2

    Product Product Code Order or Specifications

    (2N) 99% Zinc Bromate ZN-BRAT-02

    (3N) 99.9% Zinc Bromate ZN-BRAT-03

    (4N) 99.99% Zinc Bromate ZN-BRAT-04

    (5N) 99.999% Zinc Bromate ZN-BRAT-05

    CHEMICALIDENTIFICATION

    FormulaCASNo.

    PubChemSID

    PubChemCID

    MDLNo.

    ECNo

    IUPACName

    BeilsteinRe. No.

    SMILESIdentifier

    InChIIdentifier

    InChIKey

    Zn(BrO3)214519-

    07-4 N/A 61749 N/A

    238-

    529-6

    zinc

    dibromate N/A

    [Zn+2].

    [O-]Br(=O)=O.[O-]Br(=O)=O

    InChI=1S/2BrHO3.Zn/c2*2-

    1(3)4;/h2*(H,2,3,4);/q;;+2/p-2

    TUDPEWOTGHYZBQ-

    UHFFFAOYSA-L

    Compound Formula Mol. Wt. Appearance Density Exact Mass Monoisotopic Mass Charge MSDS

    Br2O6Zn 321.19 N/A N/A 319.733263 317.73531 0 Safety Data Sheet

    Zinc Bromate is generally immediately available in most volumes. Hydrate or anhydrous forms may be purchased.Highpurity, submicron and nanopowderforms may be considered.American Elements produces to many standard grades whenapplicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical

    Grade; Optical Grade, USPandEP/BP (European Pharmacopoeia/British Pharmacopoeia)and followsapplicableASTM testing standards.Typical and custom packaging is available. Additional technical, research and safety

    (MSDS) information is available as is a Reference Calculatorfor converting relevant units of measurement.

    Zincis a Block D, Group 12, Period 4 element. The number of electrons in each of Zinc's shells is 2, 8, 18, 2, and itselectronic configuration is [Ar] 3d10 4s2. In its elemental form zinc's CAS number is 7440-66-6. The zinc atom has a radius of 133.5.pm and it'sVan der Waals radius is 139.pm. Combined with other elements as ores, Zinc is found in nature. Zinc is considered non-toxicin healthy doses

    but can cause nausea if taken in excess. Zinc is a bluish-white, lustrous metal which we produce in Special High Grade (SHG) purities. It is brittle atordinary temperatures but malleable at 100 to 150 o C. It is a fair conductor of electricity, and burns in air at high red heat with evolution

    of white clouds of theoxide. It has unusual electrical, thermal, optical, and solid-state properties that have notbeen fully investigated. Themetalis employed to form numerousalloyswith othermetals. Brass,nickel,silver,

    commercial bronze, soft solder, and aluminum solder are some of the more important alloys. Large quantities ofzinc are used to produce die castings, which are used extensively by the automotive, electrical, and hardware

    industries. Zinc is also used extensively to galvanize othermetals such as iron to prevent corrosion. Zinc oxide iswidely used in the manufacture of paints, rubber products, cosmetics, pharmaceuticals, floor coverings, plastics,

    printing inks, soap, storage batteries, textiles, electrical equipment, and other products. Zinc sulfide is used in making luminous dials,

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    X-ray and TV screens, and fluorescent lights The chloride and chromate are also important compounds. Zinc is available as metal and compoundswith purities from 99% to 99.9999% (ACS grade to ultra-high purity); metals in the form of foil, sputtering target, and rod, and compounds as

    submicron and nanopowder. Zinc is mined f rom sulfidic ore deposits and is the fourth most common metal in use (after iron, aluminum, and copper).Zinc was first discovered by Andreas Marggraf in 1746. The element name Zinc originates from the German word "zin" meaningtin. See

    Zinc research below.

    Copper Zinc NanoparticlesCuZn Nanoparticles

    CAS 66402-68-4

    ProductProduct

    Code

    Order or

    Specifications

    (2N) 99% Copper ZincNanoparticles

    CUZN-FE-02-NP

    (3N) 99.9% Copper Zinc

    Nanoparticles

    CUZN-FE-03-

    NP

    (4N) 99.99% Copper Zinc

    Nanoparticles

    CUZN-FE-04-

    NP

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    (5N) 99.999% Copper Zinc

    Nanoparticles

    CUZN-FE-05-

    NP

    CHEMIC

    AL

    IDENTIF

    IER

    Formul

    a

    CAS

    No.

    PubCh

    em SID

    PubCh

    em CIDMDL No.

    EC

    No

    IUPAC

    Name

    Beilste

    in

    Re.

    No.

    SMILES

    Identifi

    er

    InChI

    Identifier

    InChI

    Key

    CuZn66402-

    68-4N/A N/A

    MFCD00084

    851N/A N/A N/A [Cu].[Zn]

    InChI=1S/Cu

    .Zn

    TVZPLCNGKSP

    OJA-

    UHFFFAOYSA-N

    PROPERT

    IES

    Mol.

    Wt.

    Appeara

    nce

    True

    Densi

    ty

    Bulk

    Densi

    ty

    Meltin

    g Point

    Boilin

    g

    Point

    Average

    Particle

    Size

    Size

    Rang

    e

    Cryst

    al

    Phas

    e

    Specif

    ic

    Surfa

    ce

    Area

    Morphol

    ogyMSDS

    126.8

    6N/A

    1.17

    g/cm3N/A 870 C N/A N/A N/A N/A N/A N/A

    Safety Data

    Sheet

    Copper Zinc (CuZn) Nanoparticles, nanodots or nanopowder are spherical or faceted high surface area metal particles. Nanoscale Tin

    Particles are typically 10-20 nanometers (nm) with specific surface area (SSA) in the 30 - 60 m 2 /g range and also available in with an

    average particle size of 80 nm range with a specific surface area of approximately 12 m 2 /g. Nano Tin Particles are also available inUltra

    high purity and high purity and coated 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 nanoparticlesallow for the particles to be preferentially adsorbed at the surface

    interface using chemically bound polymers.

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lements.com/properties-identifiers.html#ecnumberhttp://www.americanelements.com/properties-identifiers.html#iupachttp://www.americanelements.com/properties-identifiers.html#iupachttp://www.americanelements.com/properties-identifiers.html#beilsteinhttp://www.americanelements.com/properties-identifiers.html#beilsteinhttp://www.americanelements.com/properties-identifiers.html#beilsteinhttp://www.americanelements.com/properties-identifiers.html#smileshttp://www.americanelements.com/properties-identifiers.html#smileshttp://www.americanelements.com/properties-identifiers.html#smileshttp://www.americanelements.com/properties-identifiers.html#inchinamehttp://www.americanelements.com/properties-identifiers.html#inchinamehttp://www.americanelements.com/properties-identifiers.html#inchikeyhttp://www.americanelements.com/properties-identifiers.html#inchikeyhttp://www.americanelements.com/properties-identifiers.html#molecularweighthttp://www.americanelements.com/properties-identifiers.html#molecularweighthttp://www.americanelements.com/properties-identifiers.html#appearancehttp://www.americanelements.com/properties-identifiers.html#appearancehttp://www.americanelements.com/properties-identifiers.html#densityhttp://www.americanelements.com/properties-identifiers.html#densityhttp://www.americanelements.com/properties-identifiers.html#densityhttp://www.americanelements.com/properties-identifiers.html#bulkdensityhttp://www.americanelements.com/properties-identifiers.html#bulkdensityhttp://www.americanelements.com/properties-identifiers.html#bulkdensityhttp://www.americanelements.com/properties-identifiers.html#meltinghttp://www.americanelements.com/properties-identifiers.html#meltinghttp://www.americanelements.com/properties-identifiers.html#boilinghttp://www.americanelements.com/properties-identifiers.html#boilinghttp://www.americanelements.com/properties-identifiers.html#boilinghttp://www.americanelements.com/properties-identifiers.html#apshttp://www.americanelements.com/properties-identifiers.html#apshttp://www.americanelements.com/properties-identifiers.html#apshttp://www.americanelements.com/properties-identifiers.html#sizerangehttp://www.americanelements.com/properties-identifiers.html#sizerangehttp://www.americanelements.com/properties-identifiers.html#sizerangehttp://www.americanelements.com/properties-identifiers.html#crystalphasehttp://www.americanelements.com/properties-identifiers.html#crystalphasehttp://www.americanelements.com/properties-identifiers.html#crystalphasehttp://www.americanelements.com/properties-identifiers.html#ssahttp://www.americanelements.com/properties-identifiers.html#ssahttp://www.americanelements.com/properties-identifiers.html#ssahttp://www.americanelements.com/properties-identifiers.html#morphologyhttp://www.americanelements.com/properties-identifiers.html#morphologyhttp://www.americanelements.com/properties-identifiers.html#msdshttp://www.americanelements.com/request.htmlhttp://www.americanelements.com/request.htmlhttp://www.americanelements.com/Ultra_high_purity_metals&powders.htmhttp://www.americanelements.com/Ultra_high_purity_metals&powders.htmhttp://www.americanelements.com/Submicron_nano_powders.htm
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    Copperis a Block D, Group 11, Period 4 element. The number of electrons in each of Copper's shells is 2, 8, 18, 1 and its electronic configuration is [Ar]

    3d10 4s1. In its elemental form copper's CAS number is 7440-50-8. The copper atom has a radius of 127.8 .pm and it's Van der Waals radius is 140.pm.

    Copper is an essential trace element in animals and plants, but in excess copper is toxic. Due to its high electrical conductivity, large amounts of copper

    are used by the electrical industry forwire. Of all pure metals, onlysilverhas a higher electrical conductivity.Recent researchreveals that diluted magnetic

    semiconductorscan be produced using Copper. Copper is also resistant to corrosion caused by moisture, making it a widely used material in pipes, coins, and

    jewelry. Copper is often too soft for its applications, so it is incorporated in numerous alloys. For example, brass is acopper-zinc alloy, and bronze is a copper-tin alloy. Copper sulfate (CuSO4 H2O), also known as blue vitrol, is the most well-known copper compound. It is used as an agricultural poison,

    an algicide, and as a pigment for inks. Cuprous chloride (CuCl) is a powder used to absorb carbon dioxide (CO2). Copper cyanide (CuCN) is

    often used in electroplating applications. Copper is available as metaland compounds with purities from 99% to 99.9999% (ACS grade to ultra-

    high purity); metals in the form offoil, sputtering target, and rod, and compounds assubmicron and nanopowder. Copper was first

    discovered by Early Man. The origin of the word copper comes from the Latin word 'cuprium' which translates as "metal of Cyprus". Cyprus, a

    Mediterranean island, was known as an ancient source of mined copper. See Copperresearchbelow.

    Zincis a Block D, Group 12, Period 4 element. The number of electrons in each of Zinc's shells is 2, 8, 18, 2, and its electronic configuration is [Ar]

    3d10 4s2. In its elemental form zinc's CAS number is 7440-66-6. The zinc atom has a radius of 133.5.pm and it's Van der Waals radius is 139.pm.

    Combined with other elements as ores, Zinc is found in nature. Zinc is considered non-toxicin healthy doses but can cause nausea if taken in excess.

    Zinc is a bluish-white, lustrousmetalwhich we produce in Special High Grade (SHG) purities. It is brittle at ordinary temperatures but malleable at 100 to 150 o C.

    It is a fair conductor of electricity, and burns in air at high red heat with evolution of white clouds of the oxide. It has unusual

    electrical, thermal, optical, and solid-state properties that have not been fully investigated. Themetal is employed to form

    numerousalloys with othermetals. Brass,nickel, silver, commercial bronze, soft solder, and aluminumsolder are some of the

    more important alloys. Large quantities of zinc are used to produce die castings, which are used extensively by the automotive,

    electrical, and hardware industries. Zinc is also used extensively to galvanize othermetals such asironto prevent corrosion. Zinc

    oxide is widely used in the manufacture of paints, rubber products, cosmetics, pharmaceuticals, floor coverings, plastics, printing

    inks, soap, storage batteries, textiles, electrical equipment, and other products. Zinc sulfide is used in making luminous dials, X-ray and TV screens, and

    fluorescent lights The chloride and chromate are also important compounds. Zinc is available as metal and compounds with purities from 99% to 99.9999% (ACS

    grade to ultra-high purity); metals in the form of foil, sputtering target, and rod, and compounds as submicron and nanopowder. Zinc is mined from sulfidic ore

    deposits and is the fourth most common metal in use (after iron, aluminum, and copper). Zinc was first discovered by Andreas Marggraf in 1746. The element

    name Zinc originates from the German word "zin" meaningtin. See Zincresearch below.

    HEALTH, SAFETY & TRANSPORTATION INFORMATION

    Material Safety Data Sheet MSDS

    Signal Word Danger

    Hazard Statements H228-H400

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    Hazard Codes N

    Risk Codes 52/53

    Safety Precautions 61

    RTECS Number N/A

    Transport Information UN 3077 9/PG 3

    WGK Germany 3

    Globally Harmonized System of

    Classification and Labelling (GHS)

    CUSTOMERS FOR COPPER ZINC NANOPARTICLES HAVE ALSO LOOKED AT

    Copper Oxide Copper Nitrate Copper PelletsCopper

    AcetylacetonateCopper Acetate

    Copper Tin Silver

    AlloyCopper Metal

    Copper Oxide

    PelletsCopper Wire Copper Foil

    Copper ChlorideCopper Sputtering

    TargetCopper Powder Copper Nanoparticles Aluminum Magnesium Copper Alloy

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    Show Me MORE Forms of Copper

    http://www.americanelements.com/copper-zinc-nanoparticles.html

    Copperinformation, including Technical Data, Safety Data and its High Purity properties,research,applications and other useful facts are discussed below. Scientific facts such as theatomicstructure,ionization energy,abundance on Earth,conductivityandthermal propertiesare included.

    Copper is a soft, reddish metal. Due to its high electrical conductivity, large amounts ofcopper are used by the electrical industry for wire. Of all pure metals, only silver has ahigher electrical conductivity. Copper is also resistant to corrosion caused by moisture,making it a widely used material in pipes, coins, and jewelery. Copper is often too soft forits applications, so it is incorporated in numerous alloys. For example, brass is acopper-zinc alloy, and bronze is acopper-tinalloy.Copper sulfate (CuSO 4H2O), also known asblue vitrol, is the most well-known copper compound. It is used as an agricultural poison,

    an algicide, and as a pigment for inks. Cuprous chloride (CuCl) is a powder used to absorb carbon dioxide(CO2). Copper cyanide (CuCN) is often used in electroplating applications. Copper is availableas metal and compounds with purities from 99% to 99.9999% (ACS grade toultra-high purity); metals inthe form offoil, sputtering target, and rod, and compounds as submicron and nanopowder. The origin ofthe word copper comes from the Latin word 'cuprium' which translates as "metal of Cyprus". Cyprus, aMediterranean island, was known as an ancient source of mined copper.

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    Copper facts, including appearance, CAS #, and molecular formula and safety data, research andproperties are available for many specific states, forms and shapes on the product pages listed to the left.Elemental or metallic forms includepellets, rod, wire and granules forevaporation source materialpurposes.Nanoparticles and

    nanopowdersprovide ultra highsurface areawhich

    nanotechnologyresearch and recentexperimentsdemonstratefunction to createnew and uniqueproperties andbenefits.

    Oxides are available in forms including powders and dense pellets for such uses as optical coating andthin film applications. Oxides tend to be insoluble. Fluorides are another insoluble form for uses in whichoxygen is undesirable such as metallurgy, chemical and physical vapor deposition and in some opticalcoatings. Copper is available in soluble forms including chlorides, nitrates and acetates. Thesecompounds are also manufactured as solutions at specified stoichiometries.

    Copper is a Block D, Group 11, Period 4 element. The numberof electrons in each of Copper's shells is 2,

    8, 18, 1 and its electronic configuration is [Ar] 3d10

    4s1

    . In its elemental form copper's CAS number is 7440-50-8. The copper atom has a radius of 127.8 .pm and it's Van derWaals radius is 140.pm. Copper is anessential trace element in animals and plants, but in excess copperis toxic.

    All elemental metals, compounds and solutions may be synthesized inultra high purity (e.g. 99.999%) forlaboratory standards, advanced electronic, thin fillm deposition using sputtering targets andevaporationmaterials, metallurgy and optical materials and otherhigh technology applications. Information is providedfor stable (non-radioactive) isotopes. Organo-Metallic Copper compounds are soluble in organic or non-aqueous solvents. SeeAnalytical Services for information on available certified chemical and physicalanalysis techniques including MS-ICP, X-Ray Diffraction, PSD and Surface Area (BET) analysis.

    Copper was first discovered by Early Man and is is found both as native copper and in minerals such aschalcopyrite, chalcocite, azurite, malachite, and cuprite..

    (click on an element)

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