American Elements

 

Arsenic Rotatable Sputtering Target
High Purity As Rotatable Targets
7440-38-2
Product Product Code Order or Specifications
(2N) 99% Arsenic Rotatable Sputtering Target AS-M-02-STR Contact American Elements
(2N5) 99.5% Arsenic Rotatable Sputtering Target AS-M-025-STR Contact American Elements
(3N) 99.9% Arsenic Rotatable Sputtering Target AS-M-03-STR Contact American Elements
(3N5) 99.95% Arsenic Rotatable Sputtering Target AS-M-035-STR Contact American Elements
(4N) 99.99% Arsenic Rotatable Sputtering Target AS-M-04-STR Contact American Elements
(5N) 99.999% Arsenic Rotatable Sputtering Target AS-M-05-STR Contact American Elements

American Elements 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 Pharmacopeia/British Pharmacopeia) and follows applicable ASTM testing standards.See safety data and research below and pricing/lead time above. American Elements specializes in producing high purity Arsenic Rotatable Sputtering Targets with the highest possible density and smallest possible average grain sizes for use in semiconductor, photovoltaic, and coating applications by chemical vapor deposition (CVD) and physical vapor deposition (PVD) and optical applications. Our standard Rotatable Targets for large area thin film deposition are produced either by spray coating on a tubular substrate or casting of a solid tube. Rotary Targets are available with dimensions and configurations up to 1,000 mm in length for large area coating for solar energy or fuel cells and flip-chip applications. Research sized targets are also produced as well as custom sizes and alloys. All targets are analyzed using best demonstrated techniques including X-Ray Fluorescence (XRF), Glow Discharge Mass Spectrometry (GDMS), and Inductively Coupled Plasma (ICP). "Sputtering" allows for thin film deposition of an ultra high purity sputtering metallic or oxide material onto another solid substrate by the controlled removal and conversion of the target material into a directed gaseous/plasma phase through ionic bombardment. Besides rotary targets we can also provide targets outside in just about any size and shape, such as rectangular, annular, or oval targets. Materials are produced using crystallization , solid state and other ultra high purification processes such as sublimation. American Elements specializes in producing custom compositions for commercial and research applications and for new proprietary technologies. American Elements also casts any of the rare earth metals and most other advanced materials into rod, bar or plate form , as well as other machined shapes and through other processes nanoparticles . We also produce Arsenic as disc, granules, ingot, pellets, pieces, powder, and rod . Other shapes are available by request.

Arsenic(As) atomic and molecular weight, atomic number and elemental symbolArsenic is a Block P, Group 15, Period 4 element. The number of electrons in each of Arsenic's shells is 2, 8, 18, 5 and its electronic configuration is [Ar] 3d10 4s2 4p3. In its elemental form arsenic's CAS number is 1327-53-3. The arsenic atom has a radius of 124.5.pm and it's Van der Waals radius is 185.pm. Arsenic in the organic form is not harmful but in the inorganic form it is extremely toxic even in very small amounts. Arsenic has numerous applications as a semiconductor and other electronic applications as Indium arsenide, silicon arsenide and tin arsenidea. Arsenic is finding increasing uses as a doping agent in solid-state devices such as transistors. Gallium arsenide is used as a laser material to convert electricity directly into coherent light. Arsenic is used in bronzing and for hardening and improving the sphericity of shot. Arsenic 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. Arsenic information, including Technical Data, Safety Data and its High Purity properties, research, applications and other useful facts are discussed here. Scientific facts such as the atomic structure, ionization energy, abundance on Earth, conductivity and thermal properties are included. See Arsenic research below.

Formula CAS No. Appearance Molecular Weight
As 7440-38-2 Silvery 74.92
PRODUCT CATALOG Foil Submicron & Nanopowder Tolling Ultra High Purity Sputtering Target Crystal Growth Rod, Plate, Powder, etc. Home


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Recent Research & Development for Arsenic

  • Arsenic trioxide treatment decreases the oxygen consumption rate of tumor cells and radiosensitizes solid tumors. Diepart C, Karroum O, Magat J, Feron O, Verrax J, Buc Calderon P, Grégoire V, Leveque P, Stockis J, Dauguet N, Jordan BF, Gallez B. Cancer Res. 2011 Dec 2. [Epub ahead of print] PMID: 22139377 [PubMed - as supplied by publisher]

  • Arsenic-Induced Straighthead: An Impending Threat to Sustainable Rice Production in South and South-East Asia! Azizur Rahman M, Mamunur Rahman M, Hasegawa H. Bull Environ Contam Toxicol. 2011 Dec 4. [Epub ahead of print] PMID: 22139332 [PubMed - as supplied by publisher]

  • Comparative Soil Metal Analyses in Sudbury (Ontario, Canada) and Lubumbashi (Katanga, DR-Congo). Narendrula R, Nkongolo KK, Beckett P. Bull Environ Contam Toxicol. 2011 Dec 4. [Epub ahead of print] PMID: 22139330 [PubMed - as supplied by publisher]

  • Purification, crystallization and preliminary X-ray diffraction studies of the arsenic repressor ArsR from Corynebacterium glutamicum. Santha S, Pandaranayaka EP, Rosen BP, Thiyagarajan S. Acta Crystallogr Sect F Struct Biol Cryst Commun. 2011 Dec 1;67(Pt 12):1616-8. Epub 2011 Nov 26. PMID: 22139180 [PubMed - in process]

  • Arsenic contamination and speciation in surrounding waters of three old cinnabar mines. Larios R, Fernández-Martínez R, Silva V, Loredo J, Rucandio I. J Environ Monit. 2011 Dec 5. [Epub ahead of print] PMID: 22139034 [PubMed - as supplied by publisher]

  • Arsenic Exposure and Hypertension: A Systematic Review. Abhyankar LN, Jones MR, Guallar E, Navas-Acien A. Environ Health Perspect. 2011 Dec 2. [Epub ahead of print] PMID: 22138666 [PubMed - as supplied by publisher]

  • Metals in biology: defining metalloproteomes. Yannone SM, Hartung S, Menon AL, Adams MW, Tainer JA. Curr Opin Biotechnol. 2011 Dec 2. [Epub ahead of print] PMID: 22138493 [PubMed - as supplied by publisher]

  • Total and inorganic arsenic concentrations in different species of economically important algae harvested from coastal zones of Chile. Díaz O, Tapia Y, Muñoz O, Montoro R, Velez D, Almela C. Food Chem Toxicol. 2011 Nov 25. [Epub ahead of print] PMID: 22138359 [PubMed - as supplied by publisher]

  • Zamzam water: Concentration of trace elements and other characteristics. Shomar B. Chemosphere. 2011 Dec 2. [Epub ahead of print] PMID: 22138338 [PubMed - as supplied by publisher]

  • Removal of methylated arsenic using a nanostructured zirconia-based sorbent: Process performance and adsorption chemistry. Zheng YM, Yu L, Chen JP. J Colloid Interface Sci. 2011 Oct 12. [Epub ahead of print] PMID: 22137855 [PubMed - as supplied by publisher]

  • Humans seem to produce arsenobetaine and dimethylarsinate after a bolus dose of seafood. Molin M, Ulven SM, Dahl L, Telle-Hansen VH, Holck M, Skjegstad G, Ledsaak O, Sloth JJ, Goessler W, Oshaug A, Alexander J, Fliegel D, Ydersbond TA, Meltzer HM. Environ Res. 2011 Dec 1. [Epub ahead of print] PMID: 22137101 [PubMed - as supplied by publisher]

  • A modified batch reactor system to study equilibrium-reactive transport problems. Jeppu GP, Clement TP, Barnett MO, Lee KK. J Contam Hydrol. 2011 Oct 20. [Epub ahead of print] PMID: 22136983 [PubMed - as supplied by publisher]

  • Identification of the GST-T1 and GST-M1 Null Genotypes using High Resolution Melting Analysis. Drobna Z, Del Razo LM, Garcia-Vargas G, Sanchez-Ramirez B, Gonzalez-Horta C, Ballinas ML, Loomis D, Styblo M. Chem Res Toxicol. 2011 Dec 2. [Epub ahead of print] PMID: 22136492 [PubMed - as supplied by publisher]

  • Uranium and trace elements in phosphate fertilizers-saudi arabia. Khater AE. Health Phys. 2012 Jan;102(1):63-70. PMID: 22134079 [PubMed - in process]

  • Natural attenuation of arsenic in soils near a highly contaminated historical mine waste dump. Drahota P, Filippi M, Ettler V, Rohovec J, Mihaljevic M, Sebek O. Sci Total Environ. 2011 Nov 29. [Epub ahead of print] PMID: 22134035 [PubMed - as supplied by publisher]

  • Removing arsenic from synthetic groundwater with iron electrocoagulation: An Fe and As K-edge EXAFS study. van Genuchten CM, Addy SE, Pena J, Gadgil A. Environ Sci Technol. 2011 Dec 1. [Epub ahead of print] PMID: 22132945 [PubMed - as supplied by publisher]

  • Embryotoxicity assessment of developmental neurotoxicants using a neuronal endpoint in the embryonic stem cell test. Baek DH, Kim TG, Lim HK, Kang JW, Seong SK, Choi SE, Lim SY, Park SH, Nam BH, Kim EH, Kim MS, Park KL. J Appl Toxicol. 2011 Dec 1. doi: 10.1002/jat.1747. [Epub ahead of print] PMID: 22131109 [PubMed - as supplied by publisher]

  • Comparing different means of signal treatment for improving the detection power in HPLC-ICP-MS. Prikler S, Pick D, Einax JW. Anal Bioanal Chem. 2011 Dec 1. [Epub ahead of print] PMID: 22130722 [PubMed - as supplied by publisher]

  • Biological monitoring versus air monitoring strategies in assessing environmental-occupational exposure. Jakubowski M. J Environ Monit. 2011 Dec 1. [Epub ahead of print] PMID: 22130625 [PubMed - as supplied by publisher]

  • Overexpression of alfalfa mitochondrial HSP23 in prokaryotic and eukaryotic model systems confers enhanced tolerance to salinity and arsenic stress. Lee KW, Cha JY, Kim KH, Kim YG, Lee BH, Lee SH. Biotechnol Lett. 2011 Nov 30. [Epub ahead of print] PMID: 22127759 [PubMed - as supplied by publisher]

 

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