Advanced materials combining superior mechanical and biocompatibility performance are of significant interest to extend the lifetime of biomedical devices. In this work, Ag is alloyed with Ti to investigate the role of emerging TiAg intermetallic coatings with high mechanical hardness and exceptional biocompatibility. Thin films of Ti(1-x)Ag(x) were deposited on 316 L steel and glass substrates using magnetron sputtering and subsequently heat-treated to aid TiAg intermetallic development. Mechanical properties were then measured and correlated to microstructural and morphological changes in the TiAg films. In the as-grown state, the TiAg matrix developed different intermetallic structures which increased the hardness of pure Ti films from 5...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
The design of implants and functional prostheses requires superficial modifications that promote fas...
The purpose of this study is to develop Ti-Ag alloys with high corrosion resistance, low ion release...
In this work, the thermal stability of TiAgx thin films, deposited by magnetron sputtering, was eval...
In this work, the thermal stability of TiAgx thin films, deposited by magnetron sputtering, was eval...
cited By 0The ability of magnetron sputtered Ti-Ag thin films deposited on polymeric substrate to be...
In this work, the ternary titanium, copper, and silver (Ti-Cu-Ag) system is investigated as a potent...
The lifetime of orthopaedic implants can be extended by coating the softer Ti6Al4V alloy with harder...
The influence of silver on the structure and mechanical properties of sputter-deposited Ti-Al-Ag fil...
There is growing international interest in hard biocompatible thin film surface coatings to extend t...
Ideal biomaterials to fabricate orthopedic implants, especially for load-bearing joint replacements,...
Titanium–silver, Ti–Ag, thin films display excellent biocompatibility and reveal great potential to ...
Owing to the world population aging, biomedical materials, such as shape memory alloys (SMAs) have a...
In this work, the ternary titanium, copper, and silver (Ti-Cu-Ag) system is investigated as a potent...
Ti and some of its alloys (e.g. Ti-6Al-4V alloy) have become the metals of choice for the endosseous...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
The design of implants and functional prostheses requires superficial modifications that promote fas...
The purpose of this study is to develop Ti-Ag alloys with high corrosion resistance, low ion release...
In this work, the thermal stability of TiAgx thin films, deposited by magnetron sputtering, was eval...
In this work, the thermal stability of TiAgx thin films, deposited by magnetron sputtering, was eval...
cited By 0The ability of magnetron sputtered Ti-Ag thin films deposited on polymeric substrate to be...
In this work, the ternary titanium, copper, and silver (Ti-Cu-Ag) system is investigated as a potent...
The lifetime of orthopaedic implants can be extended by coating the softer Ti6Al4V alloy with harder...
The influence of silver on the structure and mechanical properties of sputter-deposited Ti-Al-Ag fil...
There is growing international interest in hard biocompatible thin film surface coatings to extend t...
Ideal biomaterials to fabricate orthopedic implants, especially for load-bearing joint replacements,...
Titanium–silver, Ti–Ag, thin films display excellent biocompatibility and reveal great potential to ...
Owing to the world population aging, biomedical materials, such as shape memory alloys (SMAs) have a...
In this work, the ternary titanium, copper, and silver (Ti-Cu-Ag) system is investigated as a potent...
Ti and some of its alloys (e.g. Ti-6Al-4V alloy) have become the metals of choice for the endosseous...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
The design of implants and functional prostheses requires superficial modifications that promote fas...
The purpose of this study is to develop Ti-Ag alloys with high corrosion resistance, low ion release...