A simple low-temperature method was employed in depositing an oxide coating on NiTi for enhancing corrosion resistance. Mechanically polished NiTi samples were pretreated in a solution containing Ti4+ ions at 60 deg C for 8 h, followed by hydrothermal treatment at 140 deg C for 10 h. After hydrothermal treatment, scanning electron microscopy (SEM) indicated the presence of an oxide film of approximately 200 nm on the NiTi substrate. Composition depth profiling of the oxide film by X-ray photoelectron spectroscopy (XPS) revealed that the oxide was TiO2. Thin-film X-ray diffractometry (TF-XRD) confirmed that anatase was the only crystalline phase present in the oxide film. Atomic force microscopy (AFM) recorded a mean surface roughness of 7.3...
NiTi was surface treated by laser oxidation for improving corrosion resistance. While the corrosion ...
<div><p>For the biomedical application of NiTi alloys, an excellent surface finishing process is req...
In order to create new applications and enhance the performance of NiTi alloys, surface modification...
A number of low-temperature soft methods recently attempted by the authors for preparing TiO2 coatin...
NiTi samples were hydrothermally treated in NaOH at 200°C with different soaking times. The morpholo...
NiTi was dip-coated with TiO2 using Ti(OC5H 9)4 as precursor. Subsequent hydrothermal treatment of t...
Abstract: Because orits good radiopacity, superelasticity, and shape memory properties, nickel-titan...
The surface of NiTi alloy was chemically modified using acidified ferric chloride solution and the c...
This study explores the phase transformations of oxide formation in NiTi and its effects on corrosio...
NiTi samples were anodized in the non-sparking regime using AC voltage in a solution containing calc...
NiTi thin-films were deposited by DC magnetron sputtering from single alloy target (Ni/Ti: 45/55 aL....
For clinical implantation purposes of shape memory metals the nearly equiatomic nickel-titanium (NiT...
Titanium oxide films with different morphologies have for the first time been fabricated through hyd...
As a non-line-of-sight surface modification technique, chemical treatment is an effective method to ...
NiTi was galvanostatically anodized in acetic acid to increase the oxide film thickness for improvin...
NiTi was surface treated by laser oxidation for improving corrosion resistance. While the corrosion ...
<div><p>For the biomedical application of NiTi alloys, an excellent surface finishing process is req...
In order to create new applications and enhance the performance of NiTi alloys, surface modification...
A number of low-temperature soft methods recently attempted by the authors for preparing TiO2 coatin...
NiTi samples were hydrothermally treated in NaOH at 200°C with different soaking times. The morpholo...
NiTi was dip-coated with TiO2 using Ti(OC5H 9)4 as precursor. Subsequent hydrothermal treatment of t...
Abstract: Because orits good radiopacity, superelasticity, and shape memory properties, nickel-titan...
The surface of NiTi alloy was chemically modified using acidified ferric chloride solution and the c...
This study explores the phase transformations of oxide formation in NiTi and its effects on corrosio...
NiTi samples were anodized in the non-sparking regime using AC voltage in a solution containing calc...
NiTi thin-films were deposited by DC magnetron sputtering from single alloy target (Ni/Ti: 45/55 aL....
For clinical implantation purposes of shape memory metals the nearly equiatomic nickel-titanium (NiT...
Titanium oxide films with different morphologies have for the first time been fabricated through hyd...
As a non-line-of-sight surface modification technique, chemical treatment is an effective method to ...
NiTi was galvanostatically anodized in acetic acid to increase the oxide film thickness for improvin...
NiTi was surface treated by laser oxidation for improving corrosion resistance. While the corrosion ...
<div><p>For the biomedical application of NiTi alloys, an excellent surface finishing process is req...
In order to create new applications and enhance the performance of NiTi alloys, surface modification...