Electronic doping in organic materials has remained an elusive concept for several decades. It drew considerable attention in the early days in the quest for organic materials with high electrical conductivity, paving the way for the pioneering work on pristine organic semiconductors (OSCs) and their eventual use in a plethora of applications. Despite this early trend, however, recent strides in the field of organic electronics have been made hand in hand with the development and use of dopants to the point that are now ubiquitous. Here, we give an overview of all important advances in the area of doping of organic semiconductors and their applications. We first review the relevant literature with particular focus on the physical processes ...
For semiconductors, doping is an efficient approach to tune their energy bandgaps, charge transport,...
For semiconductors, doping is an efficient approach to tune their energy bandgaps, charge transport,...
A world that runs on electronic devices is here to stay. The widespread use of electronic devices in...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
This article is part of the Organic Bioelectronics special issue.Electronic doping in organic materi...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
For semiconductors, doping is an efficient approach to tune their energy bandgaps, charge transport,...
For semiconductors, doping is an efficient approach to tune their energy bandgaps, charge transport,...
A world that runs on electronic devices is here to stay. The widespread use of electronic devices in...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
This article is part of the Organic Bioelectronics special issue.Electronic doping in organic materi...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
For semiconductors, doping is an efficient approach to tune their energy bandgaps, charge transport,...
For semiconductors, doping is an efficient approach to tune their energy bandgaps, charge transport,...
A world that runs on electronic devices is here to stay. The widespread use of electronic devices in...