2015
DOI: 10.1016/j.jallcom.2015.03.181
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Co-sputtered amorphous Nb–Ta, Nb–Zr and Ta–Zr coatings for corrosion protection of cyclotron targets for [18F] production

Abstract: Protective corrosion resistant coatings serve for decreasing the amount of ionic contaminants from Havar ® entrance foils of the targets for [ 18 F] production. The corrosion damage of coated entrance foils is caused mainly by the diffusion of highly reactive products of water radiolysis through the protective film towards Havar ® substrate. Since amorphous metal alloys (metallic glasses) are well-known to perform a high corrosion resistance, the glass forming ability, microstructure and diffusion barrier effi… Show more

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Cited by 14 publications
(2 citation statements)
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“…4. Since corrosion resistance of Ta was much higher than that of Zr [19], Zr was preferentially corroded, and a large number of lamellar Ta structures appeared in Fig. 4(a)-(d).…”
Section: Xrd Patterns Of Ta-zr Alloysmentioning
confidence: 99%
“…4. Since corrosion resistance of Ta was much higher than that of Zr [19], Zr was preferentially corroded, and a large number of lamellar Ta structures appeared in Fig. 4(a)-(d).…”
Section: Xrd Patterns Of Ta-zr Alloysmentioning
confidence: 99%
“…The chemical composition and surface structure of the implant surface affect the ability of the cells to attach, proliferate, and form bone and are important factors affecting the bonding strength and long-term stability of the implant [14,15]. Skliarova et al [16] deposited Nb-Zr alloy coatings with different alloy compositions by magnetron co-sputtering, and the coatings crystallized well. The microstructure and diffusion barrier efficiency of the coating were studied, which decreased with the increase in Nb content.…”
Section: Introductionmentioning
confidence: 99%