This paper investigates the surface modification of Parylene-C thin films under various oxygen plasma treatment conditions, such as power intensity (50:400 W) and exposure time (1:20 min). The extent of hydrophilicity was investigated through contact angle measurements, and correlations between treatment parameters, film thickness, restoration of hydrophobicity and etching rates were experimentally established. We also demonstrate the selective modification of Parylene-C films, facilitating distinct hydrophilic and hydrophobic areas with µm-resolution that can be exploited in self-alignment applications
The paper reports a investigation on chemical composition and morphology of parylene C samples modi...
A general method for chemical surface functionalization of parylene C [PC, (para-CH_2-C_6H_3Cl-CH_2-...
International audiencePlasma processing is used to fabricate super hydrophilic or super hydrophobic ...
Parylene C surface was modified by the use of oxygen plasma treatment and characterized by microscop...
The crystalline–amorphous parylene C structure was fabricated by Chemical Vapour Deposited (CVD) and...
This paper investigates the effects on the blood compatibility of surface nanostructuring of Parylen...
Parylene-C has been extensively used in biomedical devices as a conformal and biocompatible coating....
The effect of O2 and Ar plasma etching on poly(chloro-p-xylylene) (Parylene C) is thoroughly studied...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
The effect of O2 and Ar plasma etching on poly(chloro‐p‐xylylene) (Parylene C) is thoroughly studied...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
AbstractA bio- and haemocompatible packaging strategy is proposed for an implantable pressure sensor...
Parylene-C is used for various biomedical devices because of its high conformity and biocompatibilit...
Various reactive gas phase treatments have been investigated as surface functionalization dry proce...
In order to functionalize the surface of blown low-density polyethylene (LDPE) and cast polypropylen...
The paper reports a investigation on chemical composition and morphology of parylene C samples modi...
A general method for chemical surface functionalization of parylene C [PC, (para-CH_2-C_6H_3Cl-CH_2-...
International audiencePlasma processing is used to fabricate super hydrophilic or super hydrophobic ...
Parylene C surface was modified by the use of oxygen plasma treatment and characterized by microscop...
The crystalline–amorphous parylene C structure was fabricated by Chemical Vapour Deposited (CVD) and...
This paper investigates the effects on the blood compatibility of surface nanostructuring of Parylen...
Parylene-C has been extensively used in biomedical devices as a conformal and biocompatible coating....
The effect of O2 and Ar plasma etching on poly(chloro-p-xylylene) (Parylene C) is thoroughly studied...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
The effect of O2 and Ar plasma etching on poly(chloro‐p‐xylylene) (Parylene C) is thoroughly studied...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
AbstractA bio- and haemocompatible packaging strategy is proposed for an implantable pressure sensor...
Parylene-C is used for various biomedical devices because of its high conformity and biocompatibilit...
Various reactive gas phase treatments have been investigated as surface functionalization dry proce...
In order to functionalize the surface of blown low-density polyethylene (LDPE) and cast polypropylen...
The paper reports a investigation on chemical composition and morphology of parylene C samples modi...
A general method for chemical surface functionalization of parylene C [PC, (para-CH_2-C_6H_3Cl-CH_2-...
International audiencePlasma processing is used to fabricate super hydrophilic or super hydrophobic ...