Doping is an extremely important process where intentional insertion of impurities in semiconductors controls their electronic properties. In organic semiconductors, one of the convenient, but inefficient, ways of doping is the spin casting of a precursor mixture of components in solution, followed by solvent evaporation. Active control over this process holds the key to significant improvements over current poor doping efficiencies. Yet, an optimized control can only come from a detailed understanding of electronic interactions responsible for the low doping efficiencies. Here, we use two-dimensional nonlinear optical spectroscopy to examine these interactions in the course of the doping process by probing the solution mixture of doped org...
International audienceThe control over material properties attainable through molecular doping is es...
Simultaneous control over both the energy levels and Fermi level, a key breakthrough for inorganic e...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
Doping is an extremely important process where intentional insertion of impurities in semiconductors...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
Controlling the electrical conductivity of organic semiconductors is a key asset for organic electro...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Conductivity doping of organic semiconductors is an essential prerequisite for many organic devices,...
A method to determine the doping induced charge carrier profiles in lightly and moderately doped org...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
Doping to enhance the electrical conductivity of organic semiconductors is not without its challenge...
Ionizing chemical dopants are widely used in organic semiconductors to enhance the charge transport ...
Molecular doping is a key technique for realizing high efficient organic light-emitting diodes (OLED...
International audienceThe control over material properties attainable through molecular doping is es...
Simultaneous control over both the energy levels and Fermi level, a key breakthrough for inorganic e...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
Doping is an extremely important process where intentional insertion of impurities in semiconductors...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
Controlling the electrical conductivity of organic semiconductors is a key asset for organic electro...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Conductivity doping of organic semiconductors is an essential prerequisite for many organic devices,...
A method to determine the doping induced charge carrier profiles in lightly and moderately doped org...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
Doping to enhance the electrical conductivity of organic semiconductors is not without its challenge...
Ionizing chemical dopants are widely used in organic semiconductors to enhance the charge transport ...
Molecular doping is a key technique for realizing high efficient organic light-emitting diodes (OLED...
International audienceThe control over material properties attainable through molecular doping is es...
Simultaneous control over both the energy levels and Fermi level, a key breakthrough for inorganic e...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...