In this work, we investigate the insulating performance of an atomic layer deposited (ALD) HfO2 - polymer bilayer for platinum (Pt) metallization. As test vehicles, Pt interdigitated comb structures (IDC) were designed and fabricated on SiO2/Si substrates. The IDCs were first coated with a 100 nm thin HfO2 ALD layer. A group of samples was further encapsulated with a low-viscosity biocompatible polydimethylsiloxane (PDMS) which resulted in an HFO2-PDMS bilayer. All samples were soaked in phosphate buffered saline for 450 days at room temperature. Evaluation of the coatings included monthly optical inspection and electrochemical impedance spectrometry. For ALD-only coated IDC structures, impedance results right after submersion in saline ind...
Polydimethylsiloxane (PDMS) has been widely employed as a material for microreactors and lab-on-a-ch...
Stainless steel- and Ti-based alloys are one of the most commonly used materials for production of b...
In this study we focused on the deposition of Al2O3 and HfO2 films on commercially pure titanium (CP...
In this work, we investigate the insulating performance of an atomic layer deposited (ALD) HfO2 - po...
Long-term packaging of miniaturized, flexible implantable medical devices is essential for the next ...
In this paper we report on fabrication of Platinum (Pt) interconnects on the flexible bio-compatible...
Biomedical implants that incorporate active electronics and offer the ability to operate in a safe, ...
Platinum is widely used as the electrode material for implantable devices. Owing to its high biostab...
Within our internal FITEP technology platform (FITEP: Flexible Implantable Thin Electronic Package),...
Liquid crystal polymer (LCP) has gained wide interest in the electronics industry largely due to its...
Implantable and direct contact electronic devices for underpinning complex tissue functions as well ...
The use of electronic microsystems as medical implants gains interests due to the combination of sup...
Several requirements exist for medical devices for long term implantation. Firstly, the foreign body...
Biocompatible platinum (Pt) thin film electrodeposition on TiN substrates, as plating seed layer, us...
AbstractState of the art packaging for implantable devices uses metal or glass housings that are rel...
Polydimethylsiloxane (PDMS) has been widely employed as a material for microreactors and lab-on-a-ch...
Stainless steel- and Ti-based alloys are one of the most commonly used materials for production of b...
In this study we focused on the deposition of Al2O3 and HfO2 films on commercially pure titanium (CP...
In this work, we investigate the insulating performance of an atomic layer deposited (ALD) HfO2 - po...
Long-term packaging of miniaturized, flexible implantable medical devices is essential for the next ...
In this paper we report on fabrication of Platinum (Pt) interconnects on the flexible bio-compatible...
Biomedical implants that incorporate active electronics and offer the ability to operate in a safe, ...
Platinum is widely used as the electrode material for implantable devices. Owing to its high biostab...
Within our internal FITEP technology platform (FITEP: Flexible Implantable Thin Electronic Package),...
Liquid crystal polymer (LCP) has gained wide interest in the electronics industry largely due to its...
Implantable and direct contact electronic devices for underpinning complex tissue functions as well ...
The use of electronic microsystems as medical implants gains interests due to the combination of sup...
Several requirements exist for medical devices for long term implantation. Firstly, the foreign body...
Biocompatible platinum (Pt) thin film electrodeposition on TiN substrates, as plating seed layer, us...
AbstractState of the art packaging for implantable devices uses metal or glass housings that are rel...
Polydimethylsiloxane (PDMS) has been widely employed as a material for microreactors and lab-on-a-ch...
Stainless steel- and Ti-based alloys are one of the most commonly used materials for production of b...
In this study we focused on the deposition of Al2O3 and HfO2 films on commercially pure titanium (CP...