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iodide
DNA Effect on Cis-Trans Equilibrium and Fluorescent Properties of 3,3'-Diethyl-9-thiomethylthiacarbocyanine Iodide in Aqueous So
      
The influence of DNA on the cis-trans equilibrium and fluorescent properties of 3,3'-diethyl-9-thiomethylthiacarbocyanine iodide (DTTC) in a phosphate buffer (pH 7) was studied by various photochemical techniques.
      
Quenching of the triplet state of meso-substituted thiacarbocyanine dyes by nitroxyl radicals, iodide ions, and oxygen in soluti
      
Production of Atomic Iodine by Decomposition of Methyl Iodide by the Products of a Glow Discharge Plasma in a Flow of Oxygen
      
The experimental results are interpreted using the kinetic model developed by the authors, which includes the reactions of atomic oxygen with methyl iodide and the reactions between the resulting products.
      
A Broadband Excimer-Halogen Emitter Utilizing Xenon Bromide and Iodide
      
The Kinetics of Oxidation of Zirconium Iodide in an Air-Argon Mixture at High Temperatures
      
The thermogravimetric method is used to investigate the kinetics of oxidation of zirconium iodide in an air-argon mixture in the temperature range from 1380 to 1968 K.
      
The source radiation spectrum consists mainly of superimposed spectral bands of emission of cadmium iodide in the range 470-700 nm.
      
Reactions of modified xerogels with hydrazines, ascorbic acid, hydroquinone, iodide ion, and iron(II) and tin(II) ions were studied by solid-phase spectrophotometry.
      
Stripping voltammetry of bromide and iodide ions at a renewal silver electrode
      
The behavior of bromide and iodide ions at a silver electrode renewed by cutting off a thin 0.5-μm surface layer was studied.
      
It was shown that bromide and iodide ions can be determined in concentration ranges from 10-6 to 10-3 M and from 10-7 to 10-3 M, respectively.
      
Determination of diethyl ether and methyl iodide in dimethylcadmium using headspace analysis
      
A procedure for determining impurities of diethyl ether and methyl iodide using headspace analysis was developed.
      
The limits of detection for diethyl ether and methyl iodide were 3 x 10-4 and 2 x 10-3 mol %, respectively.
      
Electrochemical Study of Iodide in the Presence of Barbituric Acid: Application to the Catalytic Determination of Barbituric Aci
      
Electrochemical oxidation of iodide has been studied in the presence of barbituric acid using cyclic voltammetry and controlled-potential coulometry.
      
Moreover, the results are indicative of the suitability of iodide as a mediator for the determination of barbituric acid in aqueous solutions.
      
Kinetic Determination of Iodide by the Oxidation Reaction of Benzidine with Chloramine B
      
 

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