GF56726499
Molybdenum
tube, 200mm, outside diameter 1.0mm, inside diameter 0.7mm, wall thickness 0.15mm, 99.9%
Synonyme(s) :
Molybdenum, MO007063
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About This Item
Pureté
99.9%
Forme
tubes
Fabricant/nom de marque
Goodfellow 567-264-99
Résistivité
5.0 μΩ-cm, 20°C
L × épaisseur de paroi
200 mm × 0.15 mm
D.E. × D.I.
1.0 mm × 0.7 mm
Point d'ébullition
4612 °C (lit.)
Pf
2617 °C (lit.)
Densité
10.3 g/mL at 25 °C (lit.)
Chaîne SMILES
[Mo]
InChI
1S/Mo
Clé InChI
ZOKXTWBITQBERF-UHFFFAOYSA-N
Description générale
For updated SDS information please visit www.goodfellow.com.
Informations légales
Product of Goodfellow
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Expert opinion on drug metabolism & toxicology, 6(2), 133-152 (2010-01-26)
Molybdenum hydroxylases, aldehyde oxidase and xanthine oxidase, are metalloflavoproteins that catalyze both oxidation and reduction of a broad range of drugs and other xenobiotics indicating the importance of these enzymes in drug oxidation, detoxification and activation. Both enzymes are also
Hellenic journal of nuclear medicine, 14(1), 49-55 (2011-04-23)
The sleeping giant of molybdenum-99 ((99)Mo) production is grinding to a halt and the world is wondering how this happened. Fewer than 10 reactors in the world are capable of producing radio nuclides for medicine; approximately 50% of the world's
ChemSusChem, 5(7), 1146-1161 (2012-06-14)
The electrochemical behaviors of molybdenum and its oxides, both in bulk and thin film dimensions, are critical because of their widespread applications in steels, electrocatalysts, electrochromic materials, batteries, sensors, and solar cells. An important area of current interest is electrodeposited
The Journal of biological chemistry, 288(19), 13165-13172 (2013-03-30)
The transition element molybdenum needs to be complexed by a special cofactor to gain catalytic activity. Molybdenum is bound to a unique pterin, thus forming the molybdenum cofactor (Moco), which, in different variants, is the active compound at the catalytic
Journal of nanoscience and nanotechnology, 14(5), 3521-3526 (2014-04-17)
In this work, we report the size and shape-controlled synthesis of CaMoO4 nanocrystals with an aim of investigate their structural, electronic, and luminescent properties. The samples were carefully characterized by X-ray diffraction, transmission electron microscopy, Fourier transformed infrared spectroscopy, UV-vis
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