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This monograph is devoted to the study of the effect of radiation exposure on the properties of nickel-based hollow nanostructures, interest in which is due to the large potential for the use of nickel nanostructures as various electronic applications and catalysts. The choice of medium is determined by the potential application of nanostructures in microelectronic devices that are capable of heating in the process of operation and are not protected from the external environment. The choice of nickel as a material for obtaining nanostructures is due to its physical and chemical properties, as…mehr

Produktbeschreibung
This monograph is devoted to the study of the effect of radiation exposure on the properties of nickel-based hollow nanostructures, interest in which is due to the large potential for the use of nickel nanostructures as various electronic applications and catalysts. The choice of medium is determined by the potential application of nanostructures in microelectronic devices that are capable of heating in the process of operation and are not protected from the external environment. The choice of nickel as a material for obtaining nanostructures is due to its physical and chemical properties, as well as a wide range of practical applications from photovoltaics, catalysis, magnetic carriers, biomedicine, targeted drug delivery.
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Autorenporträt
Esta monografía se publicó como parte del programa de financiación por objetivos y fue financiada por el Comité de Ciencia del Ministerio de Educación y Ciencia de la República de Kazajstán (¿ BR05235921).