Title Formation and modification of nanostructured composite materials with electron and photon beams /
Translation of Title Nanostruktūrizuotų kompozicinių medžiagų formavimas ir modifikavimas elektronų ir fotonų spinduliuote.
Authors Plaipaitė-Nalivaiko, Rita
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Pages 143
Keywords [eng] ionizing radiation ; carbon coatings ; silver/polymer composites ; metal alloy nanocomposites
Abstract [eng] Embedding nanoparticles into the polymer matrix or forming nanoderivatives in polymer it is possible to create new nanostructured materials – nanocomposites characterized by unique chemical, physical, mechanical, optical, electrical properties. Various technologies are available for the modification of nanocomposites properties; high energy X-ray and electron irradiation technologies are among them. Investigation of electron and photon beam induced formation and modification mechanisms of different nanostructured nanocomposites and assessment of radiation impact on mechanical and optical properties of fabricated composites was performed in this work. It was found that high energy electrons and photons initiated the restructuration of the amorphous hydrogenated carbon coatings followed by the hydrogen desorption from the coatings as well as the formation of new polymeric structures with embedded graphite clusters. The optical transparency of modified carbon coatings was decreasing while the hardness was slightly increasing. It was found, that applying the two-step irradiation mechanism it is possible to synthesize stable silver/polymer nanocomposites from the mixture of aqueous solutions of silver salt and polymer. It was shown that dissolving the silver salt directly in polymer solution and irradiating it, it was possible to form silver/polymer nanocomposites, however the high agglomeration tendency of silver nanoparticles was observed. A new sonoelectrochemical method for the synthesis of metal alloy nanoparticles was proposed and explored. It was shown that this technique allows production of W-Co nanoparticles. Embedding the nanoparticles in to polymer matrix, led to formation of nanocomposites characterized by good X-rays absorption properties.
Dissertation Institution Kauno technologijos universitetas.
Type Doctoral thesis
Language English
Publication date 2016