Thermoelectric (TE) materials based on conjugated polymers have received much attention due to their great advantages of solution processibility, light weight, flexibility, and low thermal conductivity. These advantages make them potential candidates for large-area, low-cost and low-power TE applications. Both efficient p-type and n-type conjugated polymers with high and comparable thermoelectric performance are required for practical TE applications. However, due to the inefficient n-doping efficiency and unstable electron transport of most n-type conjugated polymers, the TE performance of n-type polymers is much poorer than that of their p-type counterparts, impeding the development of polymer TE materials. Great efforts have been made to...
We demonstrate the selectively p- or n-type doping behavior of conjugated block copolymer (BCP). The...
Thermoelectricity, by converting heat energy directly into useable electricity, offers a promising t...
Doped conjugated organic semiconductors are suitable materials to be used as building blocks of flex...
The detailed relationship between film morphology and the performance of solution processed n-type o...
Organic thermoelectric (TE) materials can directly convert heat to electricity, and they are emergin...
This chapter addresses recent progress in the field of polymer thermoelectric materials. It covers a...
Organic thermoelectric (TE) materials can directly convert heat to electricity, and they are emergin...
The effect of molecular weight of a series of conjugated polymers (CPs) on the doping efficiency, el...
The effect of molecular weight of a series of conjugated polymers (CPs) on the doping efficiency, el...
Thermoelectric plastics are a class of polymer-based materials that combine the ability to directly ...
Extraordinary progress has been achieved in polymer-based thermoelectric materials in recent years. ...
Thermoelectricity, by converting heat energy directly into useable electricity, offers a promising t...
Three n-type polymers BDPPV, ClBDPPV, and FBDPPV which exhibit Outstanding electrical conductivities...
Thermoelectricity, by converting heat energy directly into useable electricity, offers a promising t...
We studied the effect of molecular weight of a series of conjugated polymers (CPs) on the doping eff...
We demonstrate the selectively p- or n-type doping behavior of conjugated block copolymer (BCP). The...
Thermoelectricity, by converting heat energy directly into useable electricity, offers a promising t...
Doped conjugated organic semiconductors are suitable materials to be used as building blocks of flex...
The detailed relationship between film morphology and the performance of solution processed n-type o...
Organic thermoelectric (TE) materials can directly convert heat to electricity, and they are emergin...
This chapter addresses recent progress in the field of polymer thermoelectric materials. It covers a...
Organic thermoelectric (TE) materials can directly convert heat to electricity, and they are emergin...
The effect of molecular weight of a series of conjugated polymers (CPs) on the doping efficiency, el...
The effect of molecular weight of a series of conjugated polymers (CPs) on the doping efficiency, el...
Thermoelectric plastics are a class of polymer-based materials that combine the ability to directly ...
Extraordinary progress has been achieved in polymer-based thermoelectric materials in recent years. ...
Thermoelectricity, by converting heat energy directly into useable electricity, offers a promising t...
Three n-type polymers BDPPV, ClBDPPV, and FBDPPV which exhibit Outstanding electrical conductivities...
Thermoelectricity, by converting heat energy directly into useable electricity, offers a promising t...
We studied the effect of molecular weight of a series of conjugated polymers (CPs) on the doping eff...
We demonstrate the selectively p- or n-type doping behavior of conjugated block copolymer (BCP). The...
Thermoelectricity, by converting heat energy directly into useable electricity, offers a promising t...
Doped conjugated organic semiconductors are suitable materials to be used as building blocks of flex...