Control over the charge carrier density of semiconductor materials is essential for various electronic devices. Unfortunately, common electronic doping methods have not always been successful for new generations of semiconductors, such as organic semiconductors and colloidal quantum dots. Therefore, a new doping method that offers a great control over the charge carrier density is needed. Electrochemistry is a powerful way of doping porous semiconductor films, where the charge carrier density can be controlled by a button on a potentiostat. Unfortunately, when the semiconductor film is disconnected from the potentiostat, injected charges leave the film. The work performed in this thesis is aimed to understand electrochemical doping and the ...
Colloidal quantum dots (QDs) are nanometer-sized semiconductors synthesized by wet chemical methods ...
Colloidal quantum dots (CQDs) are an inexpensive and solution processable photovoltaic(PV) material ...
Semiconductor nanocrystal solids are attractive materials for active layers in next-generation optoe...
Semiconductor films that allow facile ion transport can be electronically doped via electrochemistry...
Quantum dots (QDs) are considered for devices like light-emitting diodes (LEDs) and photodetectors a...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
Given a rapidly developing world, the need exists for inexpensive renewable energy alternatives to h...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
The discovery of semi-conducting and conducting organic materials has opened new possibilities for e...
The discovery of semi-conducting organic materials has opened new possibilities for electronic devic...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
The optical properties of colloidal quantum dots (QDs) are controllable through introduction of exce...
Electronic doping of semiconductor nanomaterials can be efficiently achieved using electrochemistry....
Doping is the key feature in semiconductor device fabrication. Many strategies have been discovered ...
Colloidal Quantum Dots (CQDs) are nanoscale quantum-tuned semiconductor particles suspended in solut...
Colloidal quantum dots (QDs) are nanometer-sized semiconductors synthesized by wet chemical methods ...
Colloidal quantum dots (CQDs) are an inexpensive and solution processable photovoltaic(PV) material ...
Semiconductor nanocrystal solids are attractive materials for active layers in next-generation optoe...
Semiconductor films that allow facile ion transport can be electronically doped via electrochemistry...
Quantum dots (QDs) are considered for devices like light-emitting diodes (LEDs) and photodetectors a...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
Given a rapidly developing world, the need exists for inexpensive renewable energy alternatives to h...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
The discovery of semi-conducting and conducting organic materials has opened new possibilities for e...
The discovery of semi-conducting organic materials has opened new possibilities for electronic devic...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
The optical properties of colloidal quantum dots (QDs) are controllable through introduction of exce...
Electronic doping of semiconductor nanomaterials can be efficiently achieved using electrochemistry....
Doping is the key feature in semiconductor device fabrication. Many strategies have been discovered ...
Colloidal Quantum Dots (CQDs) are nanoscale quantum-tuned semiconductor particles suspended in solut...
Colloidal quantum dots (QDs) are nanometer-sized semiconductors synthesized by wet chemical methods ...
Colloidal quantum dots (CQDs) are an inexpensive and solution processable photovoltaic(PV) material ...
Semiconductor nanocrystal solids are attractive materials for active layers in next-generation optoe...