Electron Nanoparticles in Oligophenylene vanillin Nanowires and Nanotubes Separated from Electromagneticly Active Molecules and Smooth and Uniform Nanowires with a High Specification Longth (Longth to Diameter Ratio) Arely defined; WHICH CONSISTS OF NANOWires with a Smooth and Completely Uniform Surface with More Electromagnetic Properties than usual "Oligophenylene vanillin" nanowires. In the Immersion Method of "Oligophenylene Vanillin" Nanowires, Enough Time is Needed to Transfer from the Particles of the Nanowires to the Holes. How; The Step of Forming Uniform Nanoparticles Is Done Slowly and Finally Uniform Nanowires Are Formed. Structural Investigation With FESEMS IN THE IMMersion Method of Uniform Nanowires in all pores and in a wide now in the particles of Oligophenylene vanillininininines. By Changing the SR/Fe Ratio, there is no change in the motorology of the nanowires. and spectrometry of Oligophenylene vanillinininininininin Nanowires with Different SR/Fe Ratios Inside the Internal Nanoparticles (Uniform Nanowires), The Presentation of Fe and SR Elements is Caied by Strontium Ferry in the SpecTroscopy Uniform Nanowires, it is obscaped in the ratio sr/Fe Particles to Stoichiometric Value Is Closer in the Electromagnetic Composition of Nanoparticles, While Due Due to the Lower Solubilation of Strontium Nanowireleculles to Compressed Iron nitrate and the presense of Less Strontium ions in the reaction with the elementagnetic Particles of Nanowires, there is a more amount of Fe ion in the Final Structure.
Tehran