3C-SiC is currently under intense study as a potential material for implantable low power blood pressure sensing due to its biocompatibility. In this work, we present and discuss the fabrication processes for n-type 3C-SiC membranes using epitaxial SiC layers with thicknesses of 0.285 and 0.95 孠on Si substrates (650 孩. Membranes of n-type SiC with dimensions of 0.5װ.5 cm2 were successfully fabricated using the described method for both thicknesses. We also report the fabrication of larger area membranes (1.5ױ.0 cm2) using the 0.95 孠epitaxial layer. The thicker membrane was able to flex when probed using a micromanipulator electrical probe, however, the 0.285 孠membrane could not support the same small force. The ability to fabricate patterns...
International audienceAmong the different silicon carbide polytypes, 3C–SiC is very interesting for ...
This paper presents the fabrication and optical characterization of an ultrathin 3C-SiC membrane for...
This paper presents the fabrication and optical characterization of an ultrathin 3C-SiC membrane for...
3C-Silicon Carbide (SiC) has been identified as a potential biomaterial for implantable devices. The...
3C-Silicon Carbide (SiC) is a potential material for biomedical microdevices due to its excellent el...
International audienceThe cubic polytype of silicon carbide is an interesting candidate for Micro-El...
International audienceThe cubic polytype of silicon carbide is an interesting candidate for Micro-El...
Silicon carbide (SiC) has long been known as a robust semiconductor with superior properties to sili...
Membranes with dimensions up to 10 mm x 15 mm have been fabricated in epitaxial 3C-SiC/Si wafers. An...
Micromachined membranes are promising platforms for cell culture thanks to their miniaturization and...
The aim of this thesis is to fabricate and characterize silicon carbide coated and hence, biocompati...
This work presents the fabrication, mechanical strength characterization, and cell culture demonstra...
This work presents the fabrication, mechanical strength characterization, and cell culture demonstra...
This work presents the fabrication, mechanical strength characterization, and cell culture demonstra...
International audienceAmong the different silicon carbide polytypes, 3C–SiC is very interesting for ...
International audienceAmong the different silicon carbide polytypes, 3C–SiC is very interesting for ...
This paper presents the fabrication and optical characterization of an ultrathin 3C-SiC membrane for...
This paper presents the fabrication and optical characterization of an ultrathin 3C-SiC membrane for...
3C-Silicon Carbide (SiC) has been identified as a potential biomaterial for implantable devices. The...
3C-Silicon Carbide (SiC) is a potential material for biomedical microdevices due to its excellent el...
International audienceThe cubic polytype of silicon carbide is an interesting candidate for Micro-El...
International audienceThe cubic polytype of silicon carbide is an interesting candidate for Micro-El...
Silicon carbide (SiC) has long been known as a robust semiconductor with superior properties to sili...
Membranes with dimensions up to 10 mm x 15 mm have been fabricated in epitaxial 3C-SiC/Si wafers. An...
Micromachined membranes are promising platforms for cell culture thanks to their miniaturization and...
The aim of this thesis is to fabricate and characterize silicon carbide coated and hence, biocompati...
This work presents the fabrication, mechanical strength characterization, and cell culture demonstra...
This work presents the fabrication, mechanical strength characterization, and cell culture demonstra...
This work presents the fabrication, mechanical strength characterization, and cell culture demonstra...
International audienceAmong the different silicon carbide polytypes, 3C–SiC is very interesting for ...
International audienceAmong the different silicon carbide polytypes, 3C–SiC is very interesting for ...
This paper presents the fabrication and optical characterization of an ultrathin 3C-SiC membrane for...
This paper presents the fabrication and optical characterization of an ultrathin 3C-SiC membrane for...