2019
DOI: 10.3390/coatings9090546
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Electrochemical Properties of Niobium Coating for Biomedical Application

Abstract: The preparation of the Nb coating was performed on the bare Ti–6Al–4V alloy using the double glow discharge plasma technique. It was characterized that the Nb coating exhibited a face centered cubic (fcc) crystal structure and a pronounced (200) preferred orientation. The SEM micrograph of the cross section for the coating displayed dense microstructure with a thickness of approximately 18 µm. The critical load (Lc) of the coating was determined to be about 83.5 N by the scratch tests. The electrochemical corr… Show more

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Cited by 16 publications
(6 citation statements)
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“…Nb falls under the category of transition metals, crystallizing in a body-centered cubic (BCC) crystal lattice. 75 79 Table 1 lists some of the physical properties of the Nb.…”
Section: Important Properties Of Niobium and Niobium Oxidementioning
confidence: 99%
See 1 more Smart Citation
“…Nb falls under the category of transition metals, crystallizing in a body-centered cubic (BCC) crystal lattice. 75 79 Table 1 lists some of the physical properties of the Nb.…”
Section: Important Properties Of Niobium and Niobium Oxidementioning
confidence: 99%
“…Niobium (Nb) is a refractory metal, possessing high thermal stability, erosion-resistant properties, low vapor pressure, good chemical stability in a variety of hostile environments, excellent corrosion resistance, suitable tribomechanical properties, e.g., high wear resistance, excellent ductility at room temperature, favorable biocompatibility, and low thermal expansion. Nb falls under the category of transition metals, crystallizing in a body-centered cubic (BCC) crystal lattice. Table lists some of the physical properties of the Nb.…”
Section: Important Properties Of Niobium and Niobium Oxidementioning
confidence: 99%
“…Figure 4b presents the Nyquist plots of the samples. The Nyquist plots of the DLC films possess similar behavior, that the curves exhibit a single capacitive loop, indicating a typical capacitive response of the passive film [28]. The shape and diameter of the curves reflect the charge-transfer process and the corrosion resistance of the samples, respectively.…”
Section: Corrosion Behaviormentioning
confidence: 83%
“…For the Nyquist plots (Fig. 13 a and c), a convenient and scientifically proven way to explain the electrochemical corrosion resistance of the thin film samples is to examine the diameters of the capacitive loops (semicircles), where a larger diameter signifies higher corrosion resistance [ 69 ] As can be seen, all samples exhibit a single capacitive loop, indicating a typical capacitive response of the passive thin films [ 70 ]. The diameters of the semicircles for the Ag and Cu doped films are larger than that for the standard Ti 3 Au thin film and increase with decreasing Ag (S Ag3 to S Ag1 ) and increasing Cu (S Cu1 to S Cu3 ) content in the film, denoting an improvement in corrosion stability, which is accordant with the potentiodynamic polarization results in Table 3 .…”
Section: Resultsmentioning
confidence: 99%