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iodide ion
Reactions of modified xerogels with hydrazines, ascorbic acid, hydroquinone, iodide ion, and iron(II) and tin(II) ions were studied by solid-phase spectrophotometry.
      
Human thyroid peroxidase: Inhibition of the iodide ion and 3,3',5,5'-tetramethylbenzidine oxidation by phenolic antioxidants
      
Relaxation of the Adsorption with Charge Transfer: The Iodide Ion Adsorption on a Platinum Electrode
      
The relaxation of the iodide ion adsorption on platinum electrodes with smooth and developed surfaces is studied in the time range 10-4to 103s and frequency range 10-3to 105Hz.
      
Studying the Iodide Ion Solvation in Water-Dimethyl Sulfoxide Mixtures by the Method of Volta Potential Differences
      
Real and chemical thermodynamic parameters of resolvation of the iodide ion in water-dimethyl sulfoxide mixtures at 298 K are determined by the method of Volta potential differences.
      
An analysis of chemical energies of the iodide ion resolvation shows that anions that are capable of forming hydrogen bonds with proton-donor solvents are weakly solvated in aprotic solvents.
      
A hydrophobic amine, namely N,N-dimethyl-n-octylamine, was derivatized with 2,4,6-tribromophenyl chloroformate with addition of iodide ion to the aqueous phase.
      
The favorable effect of iodide ion as well as the choice of pH and chloroformate ester is discussed.
      
High resolution photofragment spectroscopy of the gas phase methyl iodide ion
      
The end point of the precipitation analysis of palladium(II) with potassium iodide can be indicated potentiometrically by a iodide ion-selective electrode of the type Ag2S/AgI.
      
The chemical separation of the iodide ion is carried out by anion-exchange chromatography.
      
Preparation of an iodide ion-selective electrode by chemical treatment of a silver wire
      
The preparation and application of an iodide ion-selective electrode, prepared by chemical treatment of a silver wire with Hg2+ is described.
      
A new PVC membrane electrode based on the bis(benzoin)-semiethylenediamine (BBSEA) complex of Hg(II) is described which exhibits excellent selectivity towards iodide, related to the unique interaction between the central Hg(II) and the iodide ion.
      
A novel solvent polymeric membrane electrode based on bis(1,3,4-thiadiazole) complexes of Hg(II) is described which has excellent selectivity and sensitivity toward iodide ion.
      
Iodide ion in the mobile phase was electrochemically oxidized to I2 which was subsequently reacted with I-, in an electrochemical flow cell, forming I3-.
      
There are three possible radioactive components in human plasma: hydrophilic compounds (iodide ion, etc.), lipophilic metabolites, and unchanged IBZM.
      
AgI was prepared as a stable sol under various final concentrations of iodide ion in the aqueous phase (nL) of 0.0001 M, 0.001 M and 0.01 M.
      
The results of sorption measurements for gallium (III) and iodide ion traces onto tin(II) hydroxide from aqueous heterogeneous systems are given.
      
 

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