© 2020 The Author(s) Conducting polymers have attracted tremendous attention because of their unique characteristics, such as metal-like conductivity, ionic conductivity, optical transparency, and mechanical flexibility. Texture and nanostructural engineering of conjugated conducting polymers provide an outstanding pathway to facilitate their adoption in a variety of technological applications, including energy storage and harvesting devices, flexible optoelectronic devices, and wearable electronic devices. Generally, obtaining high carrier mobility in the presence of high carrier density is challenging and requires precise control of the texture and nanostructure of conducting polymers to avoid the charge localization. Preferential semicry...
While much research in the field of conducting polymers and organic electronics focuses on developme...
THESIS 9220The field of conductive polymers is one in which there has been much interest in the last...
In this letter we report the carrier mobilities in an inorganic nanocrystal: conducting polymer comp...
The rapid development of synthetic conjugated materials has enabled organic electronic devices such ...
Conducting and semiconducting, π-conjugated polymers are promising materials for micro- and nano-opt...
Nowadays, electronic devices that include conducting polymers, ranging from batteries and OLED panel...
Since the discovery in 1977 that conjugated polymers can be doped to achieve almost metallic electro...
The optical and eleccronic properties of conjugated polymers (CPs) have been intensively studied in ...
Widespread efforts in scientific and engineering disciplines over the last half century have led to ...
Different conducting polymers form a special class of materials with the potential for many applicat...
Semiconducting polymers are composed of elongated conjugated polymer backbones and side chains with ...
A paradigm shift takes place in the fabrication of conducting polymers from bulky features with mic...
We reviewed optical and electrical properties of conjugated polymers. The charge transport models to...
Since the discovery of conducting polymers in 1977 the field of organic electronics has evolved rapi...
This work is focused on understanding how molecular-level structural control can improve charge carr...
While much research in the field of conducting polymers and organic electronics focuses on developme...
THESIS 9220The field of conductive polymers is one in which there has been much interest in the last...
In this letter we report the carrier mobilities in an inorganic nanocrystal: conducting polymer comp...
The rapid development of synthetic conjugated materials has enabled organic electronic devices such ...
Conducting and semiconducting, π-conjugated polymers are promising materials for micro- and nano-opt...
Nowadays, electronic devices that include conducting polymers, ranging from batteries and OLED panel...
Since the discovery in 1977 that conjugated polymers can be doped to achieve almost metallic electro...
The optical and eleccronic properties of conjugated polymers (CPs) have been intensively studied in ...
Widespread efforts in scientific and engineering disciplines over the last half century have led to ...
Different conducting polymers form a special class of materials with the potential for many applicat...
Semiconducting polymers are composed of elongated conjugated polymer backbones and side chains with ...
A paradigm shift takes place in the fabrication of conducting polymers from bulky features with mic...
We reviewed optical and electrical properties of conjugated polymers. The charge transport models to...
Since the discovery of conducting polymers in 1977 the field of organic electronics has evolved rapi...
This work is focused on understanding how molecular-level structural control can improve charge carr...
While much research in the field of conducting polymers and organic electronics focuses on developme...
THESIS 9220The field of conductive polymers is one in which there has been much interest in the last...
In this letter we report the carrier mobilities in an inorganic nanocrystal: conducting polymer comp...