American Elements

Beryllium Acetylacetonate
Be(CH3COCHCOCH3)2 • xH2O
10210-64-7

Product
Product Code
Order or Specifications
99% Beryllium Acetylacetonate
BE-ACAC-02
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99.9% Beryllium Acetylacetonate
BE-ACAC-03
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99.99% Beryllium Acetylacetonate
BE-ACAC-04
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99.999% Beryllium Acetylacetonate
BE-ACAC-05
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Beryllium Acetylacetonate is a Beryllium source that is soluble in organic solvents. The acetylacetonate anion complexes by bonding each oxygen atom to the metallic cation to form a chelate ring. Because of this property, Beryllium Acetylacetonate is commonly used in various catalysts and catalytic reagents for organic synthesis. It is generally immediately available in most volumes. Ultra high purity and high purity forms may be considered. Beryllium Acetylacetonate is one of numerous organo-metallic compounds sold by American Elements under the tradename AE Organo-Metallics™ for uses requiring non-aqueous solubility such as recent solar energy and water treatment applications. Similar results can sometimes also be achieved with Nanoparticles (also see Nanotechnology and Quantum Dots) and by thin film deposition. Note American Elements additionally supplies many materials as solutions. The numerous commercial applications for Beryllium include the nuclear industry and the coating on X-ray tubes. Additional technical, research and safety (MSDS) information is available.

Beryllium is a Block S, Group 2, Period 2 element. The electronic configuration is [He] 2s2. In its elemental form beryllium's CAS number is 7440-41-7. The beryllium atom has a radius of 111.3.pm and it's Van der Waals radius is 200.pm.

Formula CAS No. Appearance Molecular Weight Density Melting Point Boiling Point Solubility Stability
Be(CH3COCHCOCH3)2 • xH2O 10210-64-7 White 207.23       Soluble in organic solvents  
PRODUCT CATALOG Submicron & Nanopowder Tolling Ultra High Purity Sputtering Target Crystal Growth Rod, Plate, Powder, etc.
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Recent Research & Development for Beryllium

  • Comparison between gradient-doping GaAs photocathode and uniform-doping GaAs photocathode. Appl Opt. 2007 Oct 1;46(28):7035-9.

  • Determination of beryllium by use of photonuclear activation techniques. Appl Radiat Isot. 2007 Aug 30; [Epub ahead of print]

  • Adjustment for temporal confounders in a reanalysis of a case-control study of beryllium and lung cancer. Occup Environ Med. 2007 Sep 21; [Epub ahead of print]

  • Significant increase in the stability of rare gas hydrides on insertion of beryllium atom. J Chem Phys. 2007 Sep 21;127(11):114314.

  • Analysis of gross alpha, gross beta activities and beryllium-7 concentrations in surface air: their variations and statistical prediction model. Environ Monit Assess. 2007 Sep 21; [Epub ahead of print]

  • X-ray Raman Spectroscopic Study of Benzene at High Pressure. J Phys Chem B. 2007 Sep 20; [Epub ahead of print]

  • TGF-beta1 Variants in Chronic Beryllium Disease and Sarcoidosis. J Immunol. 2007 Sep 15;179(6):4255-4262.

  • Instrument for x-ray magnetic circular dichroism measurements at high pressures. Rev Sci Instrum. 2007 Aug;78(8):083904.

  • [Study on the determinations of Ni, Fe, Mo, Mn and B in Ti/TiC composite material by atomic emission spectrometry] Guang Pu Xue Yu Guang Pu Fen Xi. 2007 Jun;27(6):1204-6. Chinese.

  • Flow injection system for potentiometric determination of alkaline phosphatase inhibitors. Anal Chim Acta. 2006 Sep 1;577(1):134-9. Epub 2006 Jun 17.

  • TNF polymorphism and bronchoalveolar lavage cell TNF-alpha levels in chronic beryllium disease and beryllium sensitization.
    J Allergy Clin Immunol. 2007 Jan 4; [Epub ahead of print]

  • Expression profiling in granulomatous lung disease.
    Proc Am Thorac Soc. 2007;4(1):101-7.


  • [A case of pleural sarcoidosis in which vats lung biopsy, obtained pleural and pulmonary lesions]
    Nihon Kokyuki Gakkai Zasshi. 2006 Nov;44(11):838-43. Japanese.


  • Micellanized spectrophotometric method for the determination of beryllium using haematoxylin.
    Spectrochim Acta A Mol Biomol Spectrosc. 2006 Oct 17; [Epub ahead of print]


  • A theoretical framework for evaluating analytical digestion methods for poorly soluble particulate beryllium.
    Anal Bioanal Chem. 2006 Nov 24; [Epub ahead of print]


  • Manufactured uncertainty: protecting public health in the age of contested science and product defense.
    Ann N Y Acad Sci. 2006 Sep;1076:149-62.


  • Beryllium: A Modern Industrial Hazard.
    Annu Rev Public Health. 2006 Nov 9; [Epub ahead of print]


  • [Toxicologic characteristics of ammonium fluoroberyllate and its distribution in body after various intake methods]
    Med Tr Prom Ekol. 2006;(9):6-9. Russian.


  • Comparative analysis of the protein folding activities of two chaperonin subunits of Thermococcus strain KS-1: the effects of beryllium fluoride.
    Extremophiles. 2006 Oct 28; [Epub ahead of print]


  • CHemical and Biological Assessment of an Urban, Estuarine marsh in Northeastern New Jersey USA.
    Environ Monit Assess. 2006 Oct 21; [Epub ahead of print]

 

 

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