n recent times Platinum (Pt), Iridium (Ir), Iridium oxide (IrO) and Platinum-Iridium (Pt-Ir) are the favorable microelectrode materials. They show excellent electrical and mechanical properties suitable for neural stimulation and sensing/recording purposes. But their long term stability and performance is still in question especially working in conductive saline environment. Titanium Nitride (TiN) is advantageous than the mentioned noble metals used as microelectrode material for nerve stimulation and sensing. TiN films are generally used in biomedical implants due to their good mechanical and high corrosion resistance with extreme biocompatibility. Here we talk over the capabilities of sputtered TiN material as a microelectrode material wi...
Over the last years, promising concepts and practical approaches of miniaturized devices with remark...
Polycrystalline titaniumnitride (TiN) layers of 240 nmthickness and columnar microstructure were dep...
Ti/TiN biocompatible multilayers were deposited on 316L stainless steel substrates by reactive magne...
n recent times Platinum (Pt), Iridium (Ir), Iridium oxide (IrO) and Platinum-Iridium (Pt-Ir) are the...
AbstractIn recent times Platinum (Pt), Iridium (Ir), Iridium oxide (IrO) and Platinum-Iridium (Pt-Ir...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Titanium nitride thin films are widely used in biomedical implants because of their biocompatibility...
A use of the four-probe resistance measurements as a tool for characterization of a quality of titan...
Thin nanocrystalline Titanium nitride (TiN) films were deposited on mild steel (MS) substrates usin...
Present day neural prostheses require electrodes with high current densities. Traditional electrodes...
TiN films. Results demonstrated how the deposition parameters could influence the crystallographic n...
The objective in this investigation was to design and commission a magnetron sputter deposition syst...
Ti and its alloys exhibit combination of unique properties for biomedical applications, however thei...
Electrode probes are devices widely used for stimulating and recording neural cell signals in the ne...
In the present work, Agy:TiNx thin films, obtained by reactive DC magnetron sputtering, with decreas...
Over the last years, promising concepts and practical approaches of miniaturized devices with remark...
Polycrystalline titaniumnitride (TiN) layers of 240 nmthickness and columnar microstructure were dep...
Ti/TiN biocompatible multilayers were deposited on 316L stainless steel substrates by reactive magne...
n recent times Platinum (Pt), Iridium (Ir), Iridium oxide (IrO) and Platinum-Iridium (Pt-Ir) are the...
AbstractIn recent times Platinum (Pt), Iridium (Ir), Iridium oxide (IrO) and Platinum-Iridium (Pt-Ir...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Titanium nitride thin films are widely used in biomedical implants because of their biocompatibility...
A use of the four-probe resistance measurements as a tool for characterization of a quality of titan...
Thin nanocrystalline Titanium nitride (TiN) films were deposited on mild steel (MS) substrates usin...
Present day neural prostheses require electrodes with high current densities. Traditional electrodes...
TiN films. Results demonstrated how the deposition parameters could influence the crystallographic n...
The objective in this investigation was to design and commission a magnetron sputter deposition syst...
Ti and its alloys exhibit combination of unique properties for biomedical applications, however thei...
Electrode probes are devices widely used for stimulating and recording neural cell signals in the ne...
In the present work, Agy:TiNx thin films, obtained by reactive DC magnetron sputtering, with decreas...
Over the last years, promising concepts and practical approaches of miniaturized devices with remark...
Polycrystalline titaniumnitride (TiN) layers of 240 nmthickness and columnar microstructure were dep...
Ti/TiN biocompatible multilayers were deposited on 316L stainless steel substrates by reactive magne...