Selective laser melting (SLM) titanium is a suitable material for use in customized implants. However, long-term implant survival requires both successful osseointegration and promising antibacterial characteristics. Native SLM titanium thus requires proper modifications to improve its bioactivity and antibacterial efficacy. Micro-arc oxidation (MAO) was conducted on sandblasted SLM substrate to form a microporous TiO2 coating. Subsequently, hydrothermal treatment was applied to fabricate micro-nano zinc-incorporated coatings with different Zn content (1mM-Zn and 100M-Zn). Surface characterization was performed using scanning electron microscopy, X-ray photoelectron spectroscopy, X-ray diffraction, a three-dimensional profilometer, and a co...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Ruogu Xu,1,2,* Xiucheng Hu,1,2,* Xiaolin Yu,1,2 Shuangquan Wan,1,2 Fan Wu,1,2 Jianglin Ouyang,3,4 Fe...
The two major problems of titanium alloy surface of bone/dental implants were the lack of native tis...
Recently, biofilm formation caused by bacterial adhesion and colonization has been recognized as the...
Background: Selective laser melting (SLM) titanium is an ideal option to manufacture customized impl...
Micro-arc oxidation (MAO) is a surface modification technique used to improve the surface properties...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Selective laser melting manufacture of patient specific Ti implants is serving as a promising approa...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Ruogu Xu,1,2,* Xiucheng Hu,1,2,* Xiaolin Yu,1,2 Shuangquan Wan,1,2 Fan Wu,1,2 Jianglin Ouyang,3,4 Fe...
The two major problems of titanium alloy surface of bone/dental implants were the lack of native tis...
Recently, biofilm formation caused by bacterial adhesion and colonization has been recognized as the...
Background: Selective laser melting (SLM) titanium is an ideal option to manufacture customized impl...
Micro-arc oxidation (MAO) is a surface modification technique used to improve the surface properties...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Selective laser melting manufacture of patient specific Ti implants is serving as a promising approa...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Titanium-based implants are successfully used for various biomedical applications. However, in some ...
Ruogu Xu,1,2,* Xiucheng Hu,1,2,* Xiaolin Yu,1,2 Shuangquan Wan,1,2 Fan Wu,1,2 Jianglin Ouyang,3,4 Fe...