Item does not contain fulltextNanopatterns on titanium may enhance endosseous implant biofunctionality. To enable biological studies to prove this hypothesis, we developed a scalable method of fabricating nanogrooved titanium substrates. We defined nanogrooves by nanoimprint lithography (NIL) and a subsequent pattern transfer to the surface of ASTM grade 2 bulk titanium applying a soft-mask for chlorine-based reactive ion etching (RIE). With respect to direct write lithographic techniques the method introduced here is fast and capable of delivering uniformly patterned areas of at least 4 cm(2). A dedicated silicon nanostamp process has been designed to generate the required thickness of the soft-mask for the NIL-RIE pattern transfer. Stamps...
Abstract : This paper presents two approaches for the fabrication of top-down titanium nanostructure...
Today, the dominating way of patterning nanosystems is by irradiation-based lithography (e-beam, DUV...
In this work the direct transfer of nanopatterns into titanium is demonstrated. The nanofeatures are...
Nanopatterns on titanium may enhance endosseous implant biofunctionality. To enable biological studi...
Nanopatterns on titanium may enhance endosseous implant biofunctionality. To enable biological studi...
Nanofeatures may enhance biofunctionality in implants, leading to a new generation of biomaterials w...
The hypothesis of this thesis, is that nanofeatures on the surface of an implant enhance bio-functio...
We have developed a chlorine based reactive ion etching process to yield randomly oriented anisotrop...
One of the major problems with the bone implant surfaces after surgery is the competition of host an...
In this study, isotropic wet etching technology has been developed to achieve the pyramidal needle s...
Designing biomaterial surfaces to control the reaction of the surrounding tissue is still considered...
Abstract : This paper presents two approaches for the fabrication of top-down titanium nanostructure...
Today, the dominating way of patterning nanosystems is by irradiation-based lithography (e-beam, DUV...
In this work the direct transfer of nanopatterns into titanium is demonstrated. The nanofeatures are...
Nanopatterns on titanium may enhance endosseous implant biofunctionality. To enable biological studi...
Nanopatterns on titanium may enhance endosseous implant biofunctionality. To enable biological studi...
Nanofeatures may enhance biofunctionality in implants, leading to a new generation of biomaterials w...
The hypothesis of this thesis, is that nanofeatures on the surface of an implant enhance bio-functio...
We have developed a chlorine based reactive ion etching process to yield randomly oriented anisotrop...
One of the major problems with the bone implant surfaces after surgery is the competition of host an...
In this study, isotropic wet etching technology has been developed to achieve the pyramidal needle s...
Designing biomaterial surfaces to control the reaction of the surrounding tissue is still considered...
Abstract : This paper presents two approaches for the fabrication of top-down titanium nanostructure...
Today, the dominating way of patterning nanosystems is by irradiation-based lithography (e-beam, DUV...
In this work the direct transfer of nanopatterns into titanium is demonstrated. The nanofeatures are...