Conductive carbon films are highly attractive for use as electrodes in electrochemistry and biosensing applications. Patterned photoresist films can be transformed into carbon electrodes using standard photolithographic techniques followed by pyrolysation of the photoresist in a furnace under a reducing atmosphere. Previous studies have been made of the electrical properties of blanket carbon films created using this method of fabrication. However, there is a need to investigate pattern dependent effects, particularly the extent to which the dimensions of the patterned films shrink during the high temperature processing. This study applies microfabricated test structures to the process characterisation of conductive carbon produced from sta...
A wide range of carbon sources are available in nature, with a variety of micro-/nanostructure confi...
The microstructure and electrical properties of in-situ annealed carbon films is studied in this pap...
The addition of nanofeatures to carbon microelectromechanical system (C-MEMS) structures would great...
Conductive carbon films are highly attractive for use as electrodes in electrochemistry and biosensi...
Recent advances in fabricating 3D micro- and nanostructures using carbon microelectromechanical syst...
Thin layers of photoresist were spin coated onto silicon wafers, and then carbonized to form smooth ...
<p>A carbon conductive film consisting of nanometer sized domains has been patterned by scanning pho...
Thin carbon films, in the form of pyrolysed photoresist films (PPF), are being increasingly used for...
The preparation of carbon micro-patterns is reported in this paper. Different carbon micro-patterns ...
In this paper, we analyze the effect of pyrolysis temperature on the structural and electrochemical ...
Pyrolized Photoresist Carbon Electrodes (PPCEs) are fabricated by photolithographic micro-fabricatio...
Printed carbon graphite materials are the primary common component in the majority of screen printed...
SU-8, an epoxy based negative photoresist has been demonstrated as a potential precursor to fabricat...
3D-printing of conductive carbon materials in sensing applications and energy storage devices has si...
In this contribution we report on results from an optimization study of SU-8 photoresist derived car...
A wide range of carbon sources are available in nature, with a variety of micro-/nanostructure confi...
The microstructure and electrical properties of in-situ annealed carbon films is studied in this pap...
The addition of nanofeatures to carbon microelectromechanical system (C-MEMS) structures would great...
Conductive carbon films are highly attractive for use as electrodes in electrochemistry and biosensi...
Recent advances in fabricating 3D micro- and nanostructures using carbon microelectromechanical syst...
Thin layers of photoresist were spin coated onto silicon wafers, and then carbonized to form smooth ...
<p>A carbon conductive film consisting of nanometer sized domains has been patterned by scanning pho...
Thin carbon films, in the form of pyrolysed photoresist films (PPF), are being increasingly used for...
The preparation of carbon micro-patterns is reported in this paper. Different carbon micro-patterns ...
In this paper, we analyze the effect of pyrolysis temperature on the structural and electrochemical ...
Pyrolized Photoresist Carbon Electrodes (PPCEs) are fabricated by photolithographic micro-fabricatio...
Printed carbon graphite materials are the primary common component in the majority of screen printed...
SU-8, an epoxy based negative photoresist has been demonstrated as a potential precursor to fabricat...
3D-printing of conductive carbon materials in sensing applications and energy storage devices has si...
In this contribution we report on results from an optimization study of SU-8 photoresist derived car...
A wide range of carbon sources are available in nature, with a variety of micro-/nanostructure confi...
The microstructure and electrical properties of in-situ annealed carbon films is studied in this pap...
The addition of nanofeatures to carbon microelectromechanical system (C-MEMS) structures would great...