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iodine
Characterization of iodine species in the marine aerosol: To understand their roles in particle formation processes
      
In this contribution, iodine chemistry in the Marine Boundary Layer (MBL) is introduced.
      
A series of methodologies for the measurements of iodine species in the gas and particle phases of the coastal atmosphere has been developed.
      
Iodine species in the gas phase in real air samples has been determined in two field campaigns at the west coast of Ireland, indicating that gaseous iodo-hydrocarbons and elemental iodine are the precursors of new particle formation.
      
Particulate iodine speciation from the same measurement campaigns show that the non-water-soluble iodine compounds are the main iodine species during the marine particle formation.
      
It was found that the flow rates of the mobile phase had little influence on the flat flow profile of the iodine band while the properties of the stationary phase had a certain influence on them.
      
The effect of thyroid suppression therapy and radioactive iodine therapy is not conclusive.
      
The interaction with iodine ions lowers the binding of the island (nucleus) and the substrate.
      
Study of Molecular-Biochemical Mechanism of Action of Iodine-Containing Extract from Laminaria (Laminaria saccharina)
      
A Comparative Study of the Effect of Iodine-Containing Extract of Laminaria (Laminaria saccharina) and Zinc-Containing Derivativ
      
A~dependence of the unipolar charge injection on the initial conductivity for a solution of molecular iodine in transformer oil is obtained.
      
During heat treatment of lead selenide films doped with iodine, the microstructure of the film undergoes a drastic transformation of the "encapsulation" type and, simultaneously, the phase composition changes sharply.
      
In particular, the yield of radiolytic hydrogen from cyclohexane in the presence of molecular iodine increases when benzene is added to a cyclohexane solution.
      
A Theoretical Study on the Mechanism of Iodine-Photocatalyzed cis-transIsomerization of Stilbene
      
Based on nonempirical quantum-chemical calculations, the mechanism of iodine-photocatalyzed cis-transisomerization of stilbene was detailed.
      
The formation of the complex of atomic iodine with a stilbene molecule was found to be an essential intermediate step that had been ignored in the earlier considerations.
      
Volatile compounds of radioactive iodine, including methyl iodide, are released into the environment in the cases of serious accidents at nuclear power plants.
      
This fact is primarily explained by a decrease in the steady-state concentration of molecular iodine with increasing the pH.
      
AgBr(I) emulsions subjected to sulfur + gold-sensitization exhibited a flash of IR-excited green luminescence from paired iodine centers.
      
The conductivity of the polymer at 20°C was 10-8 Ω-1 cm-1, and doping with iodine resulted in a rise in conductivity to 10-3 Ω-1 cm-1.
      
 

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