This work exploits the scope of doping engineering as an enabler for better-performing and thermally stable n-type organic thermoelectrics. A fullerene derivative with polar triethylene glycol type side chain (PTEG-1) is doped either by "coprocessing doping" with n-type dopants such as n-DMBI and TBAF or by "sequential doping" through thermal deposition of Cs2CO3. Solid-state diffusion of Cs2CO3 appears to dope PTEG-1 in the strongest manner, leading to the highest electrical conductivity of similar to 17.5 S/cm and power factor of 32 mu W/(m K-2). Moreover, the behavior of differently doped PTEG-1 films under thermal stress is examined by electric and spectroscopic means. Cs2CO3-doped films are most stable, likely due to a coordinating int...
The molecular doping of organic semiconductors represents a key strategy for advancing organic elect...
We investigate the suitability of the "sequential doping" method of organic semiconductors for therm...
Electrical doping is essentially required for high-performance organic thermoelectric (TE) materials...
This work exploits the scope of doping engineering as an enabler for better-performing and thermally...
This paper describes a promising n-type doping system with high performance for thermoelectric appli...
In this contribution, for the first time, the polarity of fullerene derivatives is tailored to enhan...
In this contribution, for the first time, the polarity of fullerene derivatives is tailored to enhan...
International audienceOrganic semiconductors exhibit a large See- beck coefficient and a poor therma...
The ‘phonon-glass electron-crystal’ concept has triggered most of the progress that has been achieve...
In this contribution, the two key parameters, the polarity and side chain length have been changed t...
The molecular doping of organic semiconductors represents a key strategy for advancing organic elect...
We investigate the suitability of the "sequential doping" method of organic semiconductors for therm...
Electrical doping is essentially required for high-performance organic thermoelectric (TE) materials...
This work exploits the scope of doping engineering as an enabler for better-performing and thermally...
This paper describes a promising n-type doping system with high performance for thermoelectric appli...
In this contribution, for the first time, the polarity of fullerene derivatives is tailored to enhan...
In this contribution, for the first time, the polarity of fullerene derivatives is tailored to enhan...
International audienceOrganic semiconductors exhibit a large See- beck coefficient and a poor therma...
The ‘phonon-glass electron-crystal’ concept has triggered most of the progress that has been achieve...
In this contribution, the two key parameters, the polarity and side chain length have been changed t...
The molecular doping of organic semiconductors represents a key strategy for advancing organic elect...
We investigate the suitability of the "sequential doping" method of organic semiconductors for therm...
Electrical doping is essentially required for high-performance organic thermoelectric (TE) materials...