We have previously reported pyrolyzed parylene C (PPC) as a conductive carbon electrode material for use with micropipets, atomic force microscopy probes, and planar electrodes. Advantages of carbon electrode fabrication from PPC include conformal coating of high-aspect ratio micro/nanoscale features and the benefits afforded by chemical vapor deposition of carbon polymers. In this work, we demonstrate chemical surface doping of PPC through the use of previously reported methods. Chemically treated PPC films are characterized by multiple spectroscopic and electronic measurements. Pyrolyzed parylene C and doped PPC are used to construct diodes that are examined as both p–n heterojunction and Schottky barrier diodes. Half-wave rectification i...
We report on an experimental study of explosive electron emission properties of cathode made by nano...
Thin carbon films, in the form of pyrolysed photoresist films (PPF), are being increasingly used for...
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant ...
The awareness of our changing environment and the potential threat of global warming has been increa...
This paper presents Parylene-pyrolyzed carbon for MEMS applications. Carbons have been used as condu...
Ultrathin conductive carbon layers (UCCLs) were created by spin coating resists and subsequently con...
Thin films of cobalt phthalocyanine (CoPc) were deposited onto solid substrates through physical vap...
Graphene and its derivatives have shown potential to replace indium tin oxide in electronic applicat...
Integrating a nanostructured carbon array on a conductive substrate remains a challenging task that ...
Semiconducting polymers are promising materials for next-generation, flexible electronics devices. O...
Pyrolized Photoresist Carbon Electrodes (PPCEs) are fabricated by photolithographic micro-fabricatio...
Nanocomposite–parylene C (NCPC) thin films were deposited with a new technique based on the combinat...
Nanocarbons with test tube brush-type morphology have been prepared by liquid phase carbonization of...
The trivalent metallophthalocyanines, GaPc-Cl and InPc-Cl, have been investigated with respect to: (...
Poly(phenylene oxide) (PPO) is an electronically insulating, solid polymer film which can be prepare...
We report on an experimental study of explosive electron emission properties of cathode made by nano...
Thin carbon films, in the form of pyrolysed photoresist films (PPF), are being increasingly used for...
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant ...
The awareness of our changing environment and the potential threat of global warming has been increa...
This paper presents Parylene-pyrolyzed carbon for MEMS applications. Carbons have been used as condu...
Ultrathin conductive carbon layers (UCCLs) were created by spin coating resists and subsequently con...
Thin films of cobalt phthalocyanine (CoPc) were deposited onto solid substrates through physical vap...
Graphene and its derivatives have shown potential to replace indium tin oxide in electronic applicat...
Integrating a nanostructured carbon array on a conductive substrate remains a challenging task that ...
Semiconducting polymers are promising materials for next-generation, flexible electronics devices. O...
Pyrolized Photoresist Carbon Electrodes (PPCEs) are fabricated by photolithographic micro-fabricatio...
Nanocomposite–parylene C (NCPC) thin films were deposited with a new technique based on the combinat...
Nanocarbons with test tube brush-type morphology have been prepared by liquid phase carbonization of...
The trivalent metallophthalocyanines, GaPc-Cl and InPc-Cl, have been investigated with respect to: (...
Poly(phenylene oxide) (PPO) is an electronically insulating, solid polymer film which can be prepare...
We report on an experimental study of explosive electron emission properties of cathode made by nano...
Thin carbon films, in the form of pyrolysed photoresist films (PPF), are being increasingly used for...
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant ...