Zirconium Arsenide,CAS : 60909-47-9
Product Code : Chem-Ar091-CU-CU
E FORU specializes in producing high purity Zirconium Arsenide,CAS : 60909-47-9 with the smallest possible average grain sizes,Purities may include 99%, 99.9%, 99.99%, 99.999% and 99.9999%, which are sometimes referred to as 2N, 3N, 4N, 5N and 6N. 99.99995% (6N5), and in some cases up to 99.99999% (7N) and 99.999999% (8N),E FORU produces to many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available. Our standard powder particle sizes average in the range of - 325 mesh, - 200 mesh,- 100 mesh, 10-50 microns and submicron ( 91 micron). We can also provide in the nanoscale range.Powders are also useful in any application where high surface areas are desired such as water treatment and in fuel cell and solar applications. Nanoparticles also produce very high surface areas.Production of metallic Arsenide materials including, cobalt Arsenide, chromium Arsenide, hafnium Arsenide, molybdenum Arsenide, niobium Arsenide, tantalum Arsenide, titanium Arsenide, vanadium Arsenide, zirconium Arsenide, and numerous others.In chemistry, an arsenide is a compound of arsenic with a less electronegative element or elements. Many metals form binary compounds containing arsenic, and these are called arsenides..Quality inspection department staff which uses atomic spectroscopy, x-ray diffraction analysis, scanning electron microscopy, glow discharge mass spectroscopy (GDMS), and BET surface area analysis, among other technologies, to ensure that the elemental composition and structural properties of each product rigorously adhere to our standards.Additional technical, research and safety (MSDS) information is available,
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CAS #: 60909-47-9
Linear Formula: ZrAs
MDL Number: N/A
EC No.: 262-524-8Synonyms
arsanylidynezirconiumAlkali metal and alkaline earth arsenides,The group 1 alkali metals and the group 2, alkaline earth metals, form arsenides with isolated arsenic atoms. They form upon heating arsenic powder with excess sodium gives sodium arsenide (Na3As). The structure of Na3As is complex with unusually short Na–Na distances of 328–330 pm which are shorter than in sodium metal. This short distance indicates the complex bonding in these simple phases, i.e. they are not simply salts of As3− anion, for example.[1] The compound LiAs, has a metallic lustre and electrical conductivity indicating some metallic bonding.[1] These compounds are mainly of academic interest. For example, "sodium arsenide" is a structural motif adopted by many compounds with the A3B stoichiometry.
Indicative of their salt-like properties, hydrolysis of alkali metal arsenides gives arsine:
Na3As + 3 H2O → AsH3 + 3 NaOH,III–V compounds,Many arsenides of the group 13 elements (group III) are valuable semiconductors. Gallium arsenide (GaAs) features isolated arsenic centers with a zincblende structure (wurtzite structure can eventually also form in nanostructures), and with predominantly covalent bonding – it is a III–V semiconductor.II–V compounds,Arsenides of the group 12 elements (group II) are also noteworthy. Cadmium arsenide (Cd3As2) was shown to be a three-dimensional (3D) topological Dirac semimetal analogous to graphene.Cd3As2, Zn3As2 and other compounds of the Zn-Cd-P-As quaternary system have very similar crystalline structures, which can be considered distorted mixtures of the zincblende and antifluorite crystalline structures.Polyarsenides,Transition metal arsenides Arsenic anionics are known to catenate, that is, form chains, rings, and cages. The mineral skutterudite (CoAs3) features rings that are usually described as As4−4. Assigning formal oxidation numbers is difficult because these materials are highly covalent and often are best described with band theory. Sperrylite (PtAs2) is usually described as Pt4+As4−2. The arsenides of the transition metals are mainly of interest because they contaminate sulfidic ores of commercial interest. The extraction of the metals – nickel, iron, cobalt, copper – entails chemical processes such as smelting that poses environmental risks. In the mineral, arsenic is immobile and poses no environmental risk. Released from the mineral, arsenic is poisonous and mobile.Partial reduction of arsenic with alkali metals (and related electropositive elements) affords polyarsenic compounds, which are members of the Zintl phases.
Compound Formula: AsZr
Molecular Weight: 166.15
Appearance: solid
Melting Point: N/A
Boiling Point: N/A
Density: N/A
Solubility in H2O: N/A
Exact Mass: 164.8263
Monoisotopic Mass: 164.8263
Health & Safety Information
Signal Word: N/A
Hazard Statements: N/A
Hazard Codes: N/A
Risk Codes: N/A
Safety Statements: N/A
Transport Information: N/A
Chemical Identifiers
Linear Formula: ZrAs
Pubchem CID: 109033
MDL Number: N/A
EC No.: 262-524-8
IUPAC Name: arsanylidynezirconium
Beilstein/Reaxys No.: N/A
SMILES: [As]#[Zr]
InchI Identifier: InChI=1S/As.Zr
InchI Key: FIJMPJIZAQHCBA-UHFFFAOYSA-NStandard Packing:
Typical bulk packaging includes palletized plastic 5 gallon/25 kg. pails, fiber and steel drums to 1 ton super sacks in full container (FCL) or truck load (T/L) quantities. Research and sample quantities and hygroscopic, oxidizing or other air sensitive materials may be packaged under argon or vacuum. Solutions are packaged in polypropylene, plastic or glass jars up to palletized 2419 gallon liquid totes Special package is available on request.