In the present article it is shown that a corona discharge can be employed to dope thin films of polyaniline (PANI) coated on poly(ethylene terephthalate) films, allowing the electrical conductivity to be tuned within the range 10(-10) to 0.3 S cm(-1). A study of the effect of different corona conditions, namely corona treatment for positive and negative polarities, air humidity, treatment time, corona current, and the geometry of the corona triode, on the electrical conductivity of the polyaniline is presented. The results indicate that the corona discharge leads to protonic doping of polyaniline similar to that which occurs in conventional protonic acid solution doping. Atomic force microscopic analysis shows that, as the PANI is exposed ...
This thesis presents the results of a comprehensive study on the transport and optical properties of...
With the discovery of electrically conductive polymers (ECPs) an attractive object of research has b...
The dielectric strength of films made from poly(ethylene terephthalate) (PET) coated with a thin lay...
Conductive polymers have recently attracted a lot of attention in advanced technologies because of t...
This paper presents the process of obtaining thin films of polymer polyaniline that has been doped ...
The morphological and chemical properties of polyaniline (PANI) nanocomposite films after adding sma...
This paper describes the specific electric conductivity of thin films of the polymer polyaniline, de...
[[abstract]]Physicochemical effects of proton implantation doping on transparent nanoscale thin film...
Polyaniline (PANI) is one of the most studied conducting polymers. Obtained in its conducting form (...
The doping process is a unique and unifying theme which distinguishes conductive polymers from all o...
Note:Corona treatment in oxygen, nitrogen, helium and argon substantially enhanced the autohesion of...
The main objectives of this study were: (a) to study electronic and mechanical properties of films o...
The purpose of the present study was to determine factors responsible for promoting increased conduc...
Although polymerized aniline (polyaniline, PANI) with and without iodine (I2) doping has already bee...
Today, smart innovation has become an essential part of human life; thus, contemporary technologies ...
This thesis presents the results of a comprehensive study on the transport and optical properties of...
With the discovery of electrically conductive polymers (ECPs) an attractive object of research has b...
The dielectric strength of films made from poly(ethylene terephthalate) (PET) coated with a thin lay...
Conductive polymers have recently attracted a lot of attention in advanced technologies because of t...
This paper presents the process of obtaining thin films of polymer polyaniline that has been doped ...
The morphological and chemical properties of polyaniline (PANI) nanocomposite films after adding sma...
This paper describes the specific electric conductivity of thin films of the polymer polyaniline, de...
[[abstract]]Physicochemical effects of proton implantation doping on transparent nanoscale thin film...
Polyaniline (PANI) is one of the most studied conducting polymers. Obtained in its conducting form (...
The doping process is a unique and unifying theme which distinguishes conductive polymers from all o...
Note:Corona treatment in oxygen, nitrogen, helium and argon substantially enhanced the autohesion of...
The main objectives of this study were: (a) to study electronic and mechanical properties of films o...
The purpose of the present study was to determine factors responsible for promoting increased conduc...
Although polymerized aniline (polyaniline, PANI) with and without iodine (I2) doping has already bee...
Today, smart innovation has become an essential part of human life; thus, contemporary technologies ...
This thesis presents the results of a comprehensive study on the transport and optical properties of...
With the discovery of electrically conductive polymers (ECPs) an attractive object of research has b...
The dielectric strength of films made from poly(ethylene terephthalate) (PET) coated with a thin lay...