Disorder of doped conjugated polymers, which affects how effectively charge carriers are transported, is an important factor to be controlled to achieve high thermoelectric (TE) performance. However, experimentally controlling the disorder in highly doped polymers is difficult because of the limitations of dopant engineering. Here, by using a counter-ion exchange method, we systematically control the counter-ion-induced disorder in a highly doped state and analyze how the disorder changes the TE transport properties in poly(3,4ethylenedioxythiophene) (PEDOT). Multi-cyano-functionalized counter-ions, which exhibit different Coulombic attraction with PEDOT, change the structural and energetic disorder in PEDOT. These changes in the disorder a...
International audienceHere, an effective design strategy of polymer thermoelectric materials based o...
We set out to demonstrate the development of a highly conductive polymer based on poly-(3,4-ethylene...
A significant challenge in the rational design of organic thermoelectric materials is to realize sim...
DoctorOrganic thermoelectric generators (TEGs) requires high carrier density for high TE performance...
Doped organic semiconductors are critical to emerging device applications, including thermoelectrics...
International audienceDoped organic semiconductors are critical to emerging device applications, inc...
Conjugated polymers are emerging as attractive thermoelectric materials, resulting from low thermal ...
The thermoelectric effect is a physical phenomenon which intricately relates the thermal energy of c...
Organic materials have attracted recent interest as thermoelectric (TE) converters due to their low ...
International audienceBy directly converting heat into electricity, thermoelectric effects provide a...
A series of polythiophenes with varying side chain density was synthesized, and their electrical and...
This work is focused on understanding how molecular-level structural control can improve charge carr...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...
One of the most burning problems in organic thermoelectrics is the lack of deep understanding on the...
The detailed relationship between film morphology and the performance of solution processed n-type o...
International audienceHere, an effective design strategy of polymer thermoelectric materials based o...
We set out to demonstrate the development of a highly conductive polymer based on poly-(3,4-ethylene...
A significant challenge in the rational design of organic thermoelectric materials is to realize sim...
DoctorOrganic thermoelectric generators (TEGs) requires high carrier density for high TE performance...
Doped organic semiconductors are critical to emerging device applications, including thermoelectrics...
International audienceDoped organic semiconductors are critical to emerging device applications, inc...
Conjugated polymers are emerging as attractive thermoelectric materials, resulting from low thermal ...
The thermoelectric effect is a physical phenomenon which intricately relates the thermal energy of c...
Organic materials have attracted recent interest as thermoelectric (TE) converters due to their low ...
International audienceBy directly converting heat into electricity, thermoelectric effects provide a...
A series of polythiophenes with varying side chain density was synthesized, and their electrical and...
This work is focused on understanding how molecular-level structural control can improve charge carr...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...
One of the most burning problems in organic thermoelectrics is the lack of deep understanding on the...
The detailed relationship between film morphology and the performance of solution processed n-type o...
International audienceHere, an effective design strategy of polymer thermoelectric materials based o...
We set out to demonstrate the development of a highly conductive polymer based on poly-(3,4-ethylene...
A significant challenge in the rational design of organic thermoelectric materials is to realize sim...