Parylene C is a widely used polymer material in microfabrication because of its excellent properties such as chemical inertness, biocompatibility and flexibility. It has been commonly adopted as a structural material for a variety of microfluidics and bio-MEMS (micro-electro-mechanical system) applications. However, it is still difficult to achieve a controllable Parylene C pattern, especially on film thicker than a couple of micrometers. Here, we proposed an SF6 optimized O2 plasma etching (SOOE) of Parylene C, with titanium as the etching mask. Without the SF6, noticeable nanoforest residuals were found on the O2 plasma etched Parylene C film, which was supposed to arise from the micro-masking effect of the sputtered titanium metal mask. ...
Patterning using a Shadow Mask or Stencil technique is increasingly being utilized for creating micr...
Parylene has attracted significant research attention due to its attractive properties such as good ...
2019-04-26Parylene provides many advantages as a material for thin-film implantable devices, however...
Parylene C is a widely used polymer material in microfabrication because of its excellent properties...
A novel technique for producing high aspect ratio parylene structures via switching chemistry plasma...
Parylene C, an emerging material in microelectromechanical systems, is of particular interest in bio...
International audienceWe report on the plasma etching of thick (~23µm) Parylene C structures. Paryle...
Parylene C, an emerging material in microelectromechanical systems, is of particular interest in bio...
Parylene C (poly(monochloro-p-xylylene)) is a member of a unique family of thermoplastic, crystallin...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
International audienceHere we report on the plasma etching of thick parylene C in order to define fl...
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant ...
Polydimethylsiloxane (PDMS) is widely used as a substrate in miniaturized devices, given its suitabi...
As dictated by the International Technology Roadmap for Semiconductors, there is an immediate need t...
Patterning using a Shadow Mask or Stencil technique is increasingly being utilized for creating micr...
Parylene has attracted significant research attention due to its attractive properties such as good ...
2019-04-26Parylene provides many advantages as a material for thin-film implantable devices, however...
Parylene C is a widely used polymer material in microfabrication because of its excellent properties...
A novel technique for producing high aspect ratio parylene structures via switching chemistry plasma...
Parylene C, an emerging material in microelectromechanical systems, is of particular interest in bio...
International audienceWe report on the plasma etching of thick (~23µm) Parylene C structures. Paryle...
Parylene C, an emerging material in microelectromechanical systems, is of particular interest in bio...
Parylene C (poly(monochloro-p-xylylene)) is a member of a unique family of thermoplastic, crystallin...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
International audienceHere we report on the plasma etching of thick parylene C in order to define fl...
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant ...
Polydimethylsiloxane (PDMS) is widely used as a substrate in miniaturized devices, given its suitabi...
As dictated by the International Technology Roadmap for Semiconductors, there is an immediate need t...
Patterning using a Shadow Mask or Stencil technique is increasingly being utilized for creating micr...
Parylene has attracted significant research attention due to its attractive properties such as good ...
2019-04-26Parylene provides many advantages as a material for thin-film implantable devices, however...