34-0015
Wijs (iodine monochloride) solution | Chloroiodide | 7790-99-0 solution
Synonym(s):
Iodine monochloride solution, Chloroiodide solution, Wijs solution
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About This Item
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form
liquid
availability
available only in Japan
storage temp.
15-25°C
SMILES string
ClI
InChI
1S/ClI/c1-2
InChI key
QZRGKCOWNLSUDK-UHFFFAOYSA-N
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Suitability
for the iodine value determination
Signal Word
Danger
Hazard Statements
Precautionary Statements
Hazard Classifications
Eye Dam. 1 - Flam. Liq. 3 - Skin Corr. 1A
Storage Class Code
3 - Flammable liquids
WGK
WGK 2
Flash Point(F)
102.2 °F
Flash Point(C)
39 °C
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Biochimica et biophysica acta, 742(1), 91-99 (1983-01-12)
Rat muscle glyceraldehyde-3-phosphate dehydrogenase was reacted with two reagents aimed at the highly reactive cysteine-149 residue in the active site of the enzyme. The enzyme was rapidly inactivated by iodine monochloride. Complete inactivation occurred when approx. 6 mol ICl were
Biochemistry, 39(46), 14171-14175 (2000-11-23)
There are conflicting ideas regarding the location of the carboxyl-terminal regions of cross-linked gamma-chain dimers in double-stranded fibrin fibrils. Some investigators believe that the chains are always oriented longitudinally along each fibril strand and traverse the contacting ends of abutting
Journal of pharmaceutical and biomedical analysis, 9(2), 101-107 (1991-01-01)
Two simple and sensitive spectrophotometric methods are described for the assay of three MAO inhibitors: isocarboxazid, tranylcypromine sulphate and iproniazid phosphate. The first method is based on the formation of a highly coloured stable radical anion between the drug as
Journal of hazardous materials, 183(1-3), 132-137 (2010-08-03)
The removal of Hg(0) by the homogenous gas-phase reaction and particle-induced reaction was investigated under various conditions. Iodine monochloride was found to be efficient for Hg(0) oxidation, with the apparent 2nd-order rate constant of about 10.5(±0.3)×10(-17) cm(3) molecules(-1) s(-1) and
Analytical chemistry, 81(5), 1777-1783 (2009-02-10)
This study concerns the development of a coupled diffusion denuder system capable of separating and quantifying gaseous molecular iodine (I(2)) and two other highly reactive iodine species, ICl and HOI, which are collectively named activated iodine compounds (AIC). Both I(2)
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